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21-1) …’JŒÜ˜YA‰±äÑ‹»Ž‘A‰ª“‡–ƒˆßŽqA‹àŽq’B—Y ƒTƒNƒ‰ƒ“–Œ‚â…—n‰t’†‚ÌŒõ‘æ“ñ‚’²”gƒXƒ|ƒbƒg‚Ì‹NŒ¹‚ÌŒŸ“¢iŒû“ªj ‘æ‚P‚Q‰ñƒXƒCƒ[ƒ“ƒWƒmƒŠEƒTƒNƒ‰ƒ“Œ¤‹†‰ï”NŽŸ‘å‰ï —ߘa‚R”N‚P‚PŒŽ‚P‚R“úi–k—¤æ’[‘åAƒIƒ“ƒ‰ƒCƒ“j
21-2) Thang Dinh Phan, Goro Mizutani, Kulisara Budpud, Yanrong Li, Kosuke Okeyoshi, Makio Okajima, and Tatsuo Kaneko Observation and Modeling of second-harmonic generation active sacran aggregates ‘æ‚P‚Q‰ñƒXƒCƒ[ƒ“ƒWƒmƒŠEƒTƒNƒ‰ƒ“Œ¤‹†‰ï”NŽŸ‘å‰ï —ߘa‚R”N‚P‚PŒŽ‚P‚R“úi–k—¤æ’[‘åAƒIƒ“ƒ‰ƒCƒ“AŽáŽè”•\Üj
21-3) ‘媾Æ, `–ì‰Á“Þ, …’JŒÜ˜Y, Kulisara Budpud, ‰±äÑ‹»Ž‘, ‰ª“‡–ƒˆßŽq, ‹àŽq’B—Y ƒTƒNƒ‰ƒ“…—n‰t’†‚ÌŒõ‘æ“ñ‚’²”gƒXƒ|ƒbƒg‚Ì’ÇÕ ‘æ‚P‚Q‰ñƒXƒCƒ[ƒ“ƒWƒmƒŠEƒTƒNƒ‰ƒ“Œ¤‹†‰ï”NŽŸ‘å‰ï —ߘa‚R”N‚P‚PŒŽ‚P‚R“úi–k—¤æ’[‘åAƒIƒ“ƒ‰ƒCƒ“j
21-3) âŽèr‰î,Liu Xiaopeng, Peiyang Gong, Md Ehasanul Haque, …’J ŒÜ˜Y ”g’·‰Â•ÏSHG•ªŒõ–@‚É‚æ‚éAu/TiO2G”}ŠE–Ê‚Ì“dŽqó‘Ô‚ÌŒ¤‹† 2021”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ï —ߘa‚R”N‚P‚QŒŽ‚S“úi‹à‘ò‘åŠwAƒIƒ“ƒ‰ƒCƒ“j
[ˆÈ‰ºHŽ–’†‚Å‚·A‚·‚¢‚Ü‚¹‚ñ] [2020] (294) `–ì ‰Á“ÞA—› •F—uAæâ ‰zAKhuat Thi Thu HienA…’J ŒÜ˜Y ‰±äÑ ‹»Ž‘A‰ª“‡ –ƒˆßŽqA‹àŽq ’B—Y Œõ‘æ“ñ‚’²”gŒ°”÷‹¾‚ð—p‚¢‚½ƒTƒNƒ‰ƒ“…—n‰t‚Ì“®“IŠÏŽ@ ‘æ‚U‚V‰ñ‰ž—p•¨—Šw‰ït‹GŠwpu‰‰‰ï —ߘa‚Q”N‚RŒŽ‚P‚Q“úiã’q‘åŠwAŒû“ªAƒRƒƒi”x‰Š‚Ì‚½‚ß—\e‚Ì‚Ýj (295) Xiaopeng Liu, Peiyang Gong, Haque Mohammad, Khuat Thi Thu Hien, Goro Mizutani Analysis of the Electronic States for model Photocatalyst Au/TiO2(320)fs step structure by Optical Second Harmonic Generation (SHG) Spectroscopy “ú–{•¨—Šw‰ï‘æ‚V‚T‰ñ”NŽŸ‘å‰ï —ߘa‚Q”N‚RŒŽ‚P7“úi–¼ŒÃ‰®‘åŠwAƒ|ƒXƒ^[AƒRƒƒi”x‰Š‚Ì‚½‚ß—\e‚Ì‚Ýj (296) Thi Trinh Nguyen, Yu Sheng, Shinya Asakura, Thi Thu Hien Khuat, Goro Mizutani, Yoshitaka Murakami, Takashi Okada Investigation of unrubbed surfaces of polyimide containing steroidal structure side chains using optical second harmonic generation “ú–{•¨—Šw‰ï‘æ‚V‚T‰ñ”NŽŸ‘å‰ï —ߘa‚Q”N‚RŒŽ‚P7“úi–¼ŒÃ‰®‘åŠwAƒ|ƒXƒ^[AƒRƒƒi”x‰Š‚Ì‚½‚ß—\e‚Ì‚Ýj (297) Excitation power dependence of Second-harmonic generation and Two-photon excited fluorescence images of polysaccharide sacran cast films Thang Dinh Phan, Yanrong Li, Kana Hatano, Goro Mizutani, Kosuke Okeyoshi, Maiko Okajima, Tatsuo Kaneko “ú–{•¨—Šw‰ï2020”NH‹G‘å‰ï —ߘa‚Q”N‚XŒŽ‚W|‚P‚P“úiŒF–{‘åŠwAƒ|ƒXƒ^[AƒRƒƒi”x‰Š‚Ì‚½‚߃Iƒ“ƒ‰ƒCƒ“j (298) …’JŒÜ˜Y ˜aŽü”g”¶•ªŒõ–@‚̃Zƒ~ƒi[u˜aŽü”g”¶•ªŒõ(SFG)–@‚ÌŠî‘b‚©‚瑪’èE‰ð͂̃RƒcA•\–Ê/ŠE–ÊA—L‹@ŽŽ—¿‚̉ðÍŽ–—á‚Ü‚Åv ŽåÃFî•ñ‹@\A—ߘa‚Q”N‚WŒŽ‚Q‚S“úAƒIƒ“ƒ‰ƒCƒ“ƒZƒ~ƒi[
[2019] (288) Trinh Nguyen, Hien Kyuat, Goro Mizutani, Yoshitaka Murakami, Takashi Okada Surface Characterization of a Rubbed Polyimide Film Containing Steroidal Structure Side Chains by Using Sum Frequency Generation “ú–{•¨—Šw‰ï2019”NH‹G‘å‰ï —ߘaŒ³”N‚XŒŽ‚P‚O“úiŠò•Œ‘åŠw–öŒËƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (289) Liu Xiaopeng, Gong Peiyang, Haque Mohammad, Khuat Thi Thu Hien, Goro Mizutani Optical Second Harmonic Generation (SHG) Spectroscopy of the Stepped Photo-catalyst Au/TiO2(320) Interface “ú–{•¨—Šw‰ï2019”NH‹G‘å‰ï —ߘaŒ³”N‚XŒŽ‚P‚Q“úiŠò•Œ‘åŠw–öŒËƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (290)…’JŒÜ˜YA—›•F—uA`–ì‰Á“ÞAæâ‰zAKhuat Thi Thu HienA‰±äÑ‹»Ž‘A‰ª“‡–ƒˆßŽqA‹àŽq’B—Y ƒTƒNƒ‰ƒ“’†‚ÌŒõ”{‰¹(SHG)ƒXƒ|ƒbƒg‚ÌŽhŒƒ‰ž“š ‘æ‚P‚P‰ñƒTƒNƒ‰ƒ“Œ¤‹†‰ï@”NŽŸ‘å‰ï —ߘaŒ³”N‚P‚OŒŽ‚Q‚T“ú(–k—¤æ’[‘åA¬ƒz[ƒ‹AŒû“ª) (291)`–ì‰Á“ÞA—›•F—uAæâ‰zAKhuat Thi Thu Hien, …’JŒÜ˜YA‰±äÑ‹»Ž‘A ‰ª“‡–ƒˆßŽqA‹àŽq’B—Y ƒTƒNƒ‰ƒ“…—n‰t‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g‚ÌŠÏŽ@ ‘æ‚P‚P‰ñƒTƒNƒ‰ƒ“Œ¤‹†‰ï@”NŽŸ‘å‰ï —ߘaŒ³”N‚P‚OŒŽ‚Q‚T“ú(–k—¤æ’[‘åA¬ƒz[ƒ‹Aƒ|ƒXƒ^[) (292) `–ì‰Á“ÞA—›•F—uAæâ‰zAKhuat Thi Thu Hien, …’JŒÜ˜YA‰±äÑ‹»Ž‘A ‰ª“‡–ƒˆßŽqA‹àŽq’B—Y Œõ‘æ“ñ‚’²”g‚ð—p‚¢‚½ƒTƒNƒ‰ƒ“…—n‰t‚Ì“®“IŠÏŽ@ —ߘaŒ³”N“x(2019”N)‰ž—p•¨—Šw–k—¤EM‰zŽx•”Šwpu‰‰‰ï —ߘaŒ³”N‚P‚QŒŽ‚V“úi•Ÿˆä‘åŠw•¶‹žƒLƒƒƒ“ƒpƒXAŒû“ªj (293)YU Sheng, ó‘qT–íANguyen Thi Trinh, Khuat Thi Thu Hien, …’JŒÜ˜YA‘ºã‰Ã’A‰ª“cŒh SHG•ªŒõ–@‚ð—p‚¢‚½ƒXƒeƒƒCƒh\‘¢‚ð‚à‚ƒ|ƒŠƒCƒ~ƒh‰t»”zŒü–Œ‚̉ðÍ —ߘaŒ³”N“x(2019”N)‰ž—p•¨—Šw–k—¤EM‰zŽx•”Šwpu‰‰‰ï —ߘaŒ³”N‚P‚QŒŽ‚V“úi•Ÿˆä‘åŠw•¶‹žƒLƒƒƒ“ƒpƒXAŒû“ªj
{2018} (276) —›•F—uAæâ‰zAKhuat HienA…’JŒÜ˜Y SHGŒ°”÷‹¾‚É‚¨‚¯‚é’wå‚Ì‹z’…”Õ‚ÌSHG‚Ì•ÎŒõˆË‘¶«‚ÌŒ¤‹† “ú–{•¨—Šw‰ï‘æ‚V‚R‰ñ”NŽŸ‘å‰ï •½¬‚R‚O”N‚RŒŽ‚Q‚Q“úi“Œ‹ž—‰È‘åŠw–ì“cƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (280) ¼Œ´•jA…’JŒÜ˜YASharmin Sultana, ‹»ŽRÂAKhuat Thi Thu HienA ’†‘º•Û“T ‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‚Æ•ªŒõ–@‚É‚æ‚é“onˆîŽíŽq’†‚Ì“œ½‚̕ω»‚ÌŠÏŽ@‚Q “ú–{•¨—Šw‰ï‘æ‚V‚R‰ñ”NŽŸ‘å‰ï •½¬‚R‚O”N‚RŒŽ‚Q‚Q“úi“Œ‹ž—‰È‘åŠw–ì“cƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (281) —EŽu–QAæâ‰zAKhuat Thi Thu HienA…’JŒÜ˜Y Œõ˜aŽü”g•ªŒõ–@‚É‚æ‚é”Mˆ—‘OŒã‚Ì‚à‚¿•Ä‚É‚¨‚¯‚镪Žq”zŒü‰ðÍ “ú–{•¨—Šw‰ï‘æ‚V‚R‰ñ”NŽŸ‘å‰ï •½¬‚R‚O”N‚RŒŽ‚Q‚Q“úi“Œ‹ž—‰È‘åŠw–ì“cƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (282) Lin Liang, Yue Zhao, Khuat Hien, Goro Mizutani Study of molecular orientation of attachment discs of a spider by sum frequency generation spectroscopy “ú–{•¨—Šw‰ï‘æ‚V‚R‰ñ”NŽŸ‘å‰ï •½¬‚R‚O”N‚RŒŽ‚Q‚Q“úi“Œ‹ž—‰È‘åŠw–ì“cƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (283) 龔”|—zAMohammad Ehasanul HaqueAKhuat HienA…’JŒÜ˜Y ”g’·‰Â•ÏSHG•ªŒõ–@‚É‚æ‚éAu/TiO2ŒõG”}ŠE–Ê‚Ì“dŽqó‘Ô‚ÌŒ¤‹† “ú–{•¨—Šw‰ï‘æ‚V‚R‰ñ”NŽŸ‘å‰ï •½¬‚R‚O”N‚RŒŽ‚Q‚Q“úi“Œ‹ž—‰È‘åŠw–ì“cƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (284) ó‘qT–íA’–ŒÒ—m•ãAKhuat HienA…’JŒÜ˜YA‘ºã‰ÃâMA‰ª“cŒh SHG•ªŒõ–@‚ð—p‚¢‚½ƒnƒCƒvƒŒƒ`ƒ‹ƒg‰t»”zŒü–Œ‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï‘æ‚V‚R‰ñ”NŽŸ‘å‰ï •½¬‚R‚O”N‚RŒŽ‚Q‚Q“úi“Œ‹ž—‰È‘åŠw–ì“cƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (285) ŽüŠC–¾Aæâ‰zAKhuat HienA…’JŒÜ˜YA’†’¬½A‰º“c’B–ç ƒtƒFƒ€ƒg•bƒŒ[ƒU[”÷׉ÁH–@‹y‚уiƒmƒCƒ“ƒN‚É‚æ‚éƒiƒmƒƒCƒYƒhƒbƒg‚Ì »ì “ú–{•¨—Šw‰ï‘æ‚V‚R‰ñ”NŽŸ‘å‰ï •½¬‚R‚O”N‚RŒŽ‚Q‚Q“úi“Œ‹ž—‰È‘åŠw–ì“cƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (286) …’JŒÜ˜YAæâ‰zAKhuat Thi Thu HienA‰ª“‡–ƒˆßŽqA‹àŽq’B•v ŽíX‚ÌŽhŒƒ‚ðŽó‚¯‚½ƒTƒNƒ‰ƒ“‹ÃW‘Ì‚©‚ç‚ÌŒõ‚Ì”{‰¹‚ÌŠÏŽ@(µ‘Òu‰‰) “ú–{–òŠw‰ï‘æ138”N‰ï •½¬‚R‚O”N‚RŒŽ‚Q‚W“úi‹à‘òAƒzƒeƒ‹‹à‘òAŒû“ªj (287) ¼Œ´•jA…’JŒÜ˜YASharmin SultanaA‹»ŽRÂAKhuat Thi Thu HienA ’†‘º•Û“T ‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‚Æ•ªŒõ–@‚É‚æ‚é•ÏˆÙ‘̃CƒlŽíŽq“on‰ß’ö‚̃Oƒ‹ƒJƒ““œ½‚Ì\‘¢‚ÉŠÖ‚·‚錤‹† “ú–{•¨—Šw‰ï2018”NH‹G‘å‰ï •½¬‚R‚O”N‚XŒŽ‚P‚P“úi“¯ŽuŽÐ‘åŠw‹ž“c•ÓƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j
[2017] (268) ’–ŒÒ—m•ãAMuhammad Samir UllahAóˆäãÄ•½AKhuat Thi Thu HienA …’JŒÜ˜YA‘ºã‰Ã’A‰ª“cŒh SHG•ªŒõ–@‚É‚æ‚é‰t»ƒpƒlƒ‹Šî”Â\¬•ªŽq‚Ì\‘¢‚ÌŒ¤‹† “ú–{•¨—Šw‰ï‘æ‚V‚Q‰ñ”NŽŸ‘å‰ï •½¬‚Q‚X”N‚RŒŽ‚P‚V“úi‘åã‘åŠw–L’†ƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (269) Khuat Thi Thu Hien, Kengo Yamabe, Goro Mizutani Sum frequency generation and second harmonic generation observation of orientation of 3-Aminoprophyltriethoxysilane on the SiO2 substrates for biosensor “ú–{•¨—Šw‰ï‘æ‚V‚Q‰ñ”NŽŸ‘å‰ï •½¬‚Q‚X”N‚RŒŽ‚P‚V“úi‘åã‘åŠw–L’†ƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (270) Haque MD Ehasanul, Daiki Kobayashi, Yuki Tomatsu, Khuat Thi Thu Hien, Goro Mizutani, and Harvey N. Rutt Measurement of the Electronic States from Au/TiO2(320) Interface Using Optical Second Harmonic Generation “ú–{•¨—Šw‰ï‘æ‚V‚Q‰ñ”NŽŸ‘å‰ï •½¬‚Q‚X”N‚RŒŽ‚P‚V“úi‘åã‘åŠw–L’†ƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j (271) …’JŒÜ˜YA‚‹´Š°–¾A‹{“à—ÇL ŽžŠÔ•ª‰ðŒõ‘æ“ñ‚’²”g•ªŒõ–@‚É‚æ‚éŽ_‰»ƒ`ƒ^ƒ“•\–Ê‚Ì’·Žõ–½ƒLƒƒƒŠƒA[‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï‘æ‚V‚Q‰ñ”NŽŸ‘å‰ï •½¬‚Q‚X”N‚RŒŽ‚Q‚O“úi‘åã‘åŠw–L’†ƒLƒƒƒ“ƒpƒXAŒû“ªj (272) ²–ì—z”VAŒKŒ´³ŽjA…’JŒÜ˜Y —Z‰ð‚É‚æ‚éSb2Te3‚ÌŒõŠw“Á«•Ï‰»‚Ì‘æˆêŒ´—ŒvŽZ ‘æ‚V‚W‰ñ‰ž—p•¨—Šw‰ïH‹GŠwpu‰‰‰ï •½¬‚Q‚X”N‚XŒŽ‚T|‚W“úi•Ÿ‰ª‘Û‰ï‹cêAƒ|ƒXƒ^[j (273) H. Sano, M. Kuwahara, and G. Mizutani Ab initio calculation of optical properties change of antimonide due to the melting Phase Change Oriented Science 2017 •½¬‚Q‚X”N‚P‚PŒŽ‚P‚U|‚P‚V“ú(”MŠCƒjƒ…[ƒtƒWƒ„ƒzƒeƒ‹) (274) ’–ŒÒ—m•ãAó‘qT–íAKhuat Thi Thu HienA…’JŒÜ˜YA‘ºã‰ÃâMA‰ª “cŒh Œõ‘æ“ñŽŸ‚’²”g”¶‚ð—p‚¢‚½‚ƒvƒŒƒ`ƒ‹ƒgŠpƒ|ƒŠƒCƒ~ƒh‚Ì•\–Ê”zŒü‚ÌŒ¤‹† “ú–{•¨—Šw‰ï2017”NH‹G‘å‰ï •½¬‚Q‚X”N‚XŒŽ‚Q‚P“úiŠâŽè‘åŠwAƒ|ƒXƒ^[j (275) ¼Œ´•jA…’JŒÜ˜YASharmin SultanaA‹»ŽRÂAKhuat Thi Thu HienA ’†‘º•Û“T ‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‚Æ•ªŒõ–@‚É‚æ‚éˆîŽíŽq’†‚Ì“œ½‚ÌŽžŠÔ•Ï‰»‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï2017”NH‹G‘å‰ï •½¬‚Q‚X”N‚XŒŽ‚Q‚R“úiŠâŽè‘åŠwAƒ|ƒXƒ^[j
16-1) Khuat Thi Thu Hien, Md. Abdus Sattar, Yoshihiro Miyauchi, Goro Mizutani Desorption kinetics of hydrogen on flat H-Si(111) surfaces studied by SFG and SHG spectroscopy (µ‘Òu‰‰) ‘æ7‰ñSFGŒ¤‹†‰ïu_‚ç‚©‚È•ªŽqŒnvƒ[ƒNƒVƒ‡ƒbƒv˜aŽü”g•ªŒõ •½¬‚Q‚W”N6ŒŽ11“úi“Œ‹žH‹Æ‘åŠwE‘剪ŽRƒLƒƒƒ“ƒpƒXAŒû“ªj
16-2) ‹{“à—ÇLA—é–Ø—²‘¥AX‰º—ºA“c’†³rA‘å–ì^–çA…’JŒÜ˜Y 254‹{“à—ÇLA²“¡¯A‘Š”nãÄ‘¾A ”~‘º‘׎jAàVˆä^–çA“c’†O˜aA“‡“c“§A–k“‡³OAK. T. T. HienA…’JŒÜ˜YA“c’†³rA—é–Ø—²‘¥ “ñŽŸŒ³”z—ñ‚µ‚½‹àƒiƒm”÷—±Žq‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g‚Ì•ÎŒõŠpˆË‘¶« “ú–{•¨—Šw‰ï‘æ‚V‚P‰ñ”NŽŸ‘å‰ï •½¬‚Q‚W”N‚RŒŽ‚Q‚P“úi“Œ–kŠw‰@‘åŠwAƒ|ƒXƒ^[j
16-3) “Œ¼—SŽ÷AMohammad Ehasanul HaqueAkhuat Thi Thu HienA…’JŒÜ˜YAHarvey N. Rutt Au/TiO2(320)•\–Ê‚É‚¨‚¯‚éŒõ‘æ“ñ‚’²”g”¶‚ÉŠÖ‚·‚錤‹† ‘æ‚R‰ñ—L‹@E–³‹@ƒGƒŒƒNƒgƒƒjƒNƒXƒVƒ“ƒ|ƒWƒEƒ€ •½¬‚Q‚W”N‚VŒŽ‚P‚T“úiÎ쌧‹L”O‚µ‚¢‚Ì‚«Œ}•oŠÙAƒ|ƒXƒ^[j
16-4) Muhammad Samir Ullah, Siti Zulaikha Ngah Demon, Kazushi Matsumoto, Yoshihiro Miyauchi, Khuat Thi Thu Hien, Goro Mizutani, and Harvey Rutt Theoretical approach of the nonlinear second harmonic interferometry technique: Case study for organic semiconductor interface ‘æ‚R‰ñ—L‹@E–³‹@ƒGƒŒƒNƒgƒƒjƒNƒXƒVƒ“ƒ|ƒWƒEƒ€ •½¬‚Q‚W”N‚VŒŽ‚P‚T“úiÎ쌧‹L”O‚µ‚¢‚Ì‚«Œ}•oŠÙAƒ|ƒXƒ^[j
16-5) Md. Abdus Sattar, Khuat Thi Thu Hien, Yoshihiro Miyauchi, Goro Mizutani, and Harvey N. Rutt Hydrogen desorption activation energy from the Si(111)1x1:H surfaces studied by optical sum frequency and second harmonic spectroscopies ‘æ‚R‰ñ—L‹@E–³‹@ƒGƒŒƒNƒgƒƒjƒNƒXƒVƒ“ƒ|ƒWƒEƒ€ •½¬‚Q‚W”N‚VŒŽ‚P‚T“úiÎ쌧‹L”O‚µ‚¢‚Ì‚«Œ}•oŠÙAƒ|ƒXƒ^[j
16-6) M. S. Ullah, S. Z. N. Demon, K. Matsumoto, Y. Miyauchi, K. T. T. Hien, G. Mizutani, and H. Rutt Investigation of the Phase Shif at the Interface of the Functional Organic Materials by Nonlinear Optical Method “ú–{•¨—Šw‰ï2016”NH‹G‘å‰ï •½¬‚Q‚W”N‚XŒŽ‚P‚R“úi‹à‘ò‘åŠwAƒ|ƒXƒ^[j
16-7) MD Ehasanul Haque, Daiki Kobayashi, Yuki Tomatsu, Khuat Thi Thu Hien, Goro Mizutani, and Harvey Rutt Optical Second Harmonic Investigation of the Au/TiO2(320) Interface “ú–{•¨—Šw‰ï2016”NH‹G‘å‰ï •½¬‚Q‚W”N‚XŒŽ‚P‚R“úi‹à‘ò‘åŠwAƒ|ƒXƒ^[j
16-8) MD Abdus Sattar, Kengo Yamabe, Khuat Thi Thu Hien, Yoshihiro Miyauchi, Goro Mizutani, and Harvey N. Rutt Desorption activation energy of hydrogen from the Si(111)1X1:H surfaces studied by SFG and SHG spectroscopy “ú–{•¨—Šw‰ï2016”NH‹G‘å‰ï •½¬‚Q‚W”N‚XŒŽ‚P‚R“úi‹à‘ò‘åŠwAƒ|ƒXƒ^[j
16-9) Khuat Thi Thu Hien, Yoshihiro Miyauchi, MD Abdus Sattar, and Goro Mizutani Time-resolved sum frequency generation of hydrogenated vicinal Si(111) surfaces “ú–{•¨—Šw‰ï2016”NH‹G‘å‰ï •½¬‚Q‚W”N‚XŒŽ‚P‚R“úi‹à‘ò‘åŠwAƒ|ƒXƒ^[j
16-10) æâ‰zA‰¤—•ê¢AKhuat Thi Thu Hien, …’JŒÜ˜Y ƒtƒFƒ€ƒg•bƒŒ[ƒU[‚É‚æ‚éƒKƒ‰ƒXŠî”Âã‚ÌFASŽ©ŒÈWω»•ªŽq–Œ‚̉ÁH “ú–{•¨—Šw‰ï2016”NH‹G‘å‰ï •½¬‚Q‚W”N‚XŒŽ‚P‚R“úi‹à‘ò‘åŠwAƒ|ƒXƒ^[j
16-11) Sharmin Sultana, Goro Mizutani, Wataru Kouyama, Khuat Thi Thu Hien, and Yasunori Nakamura Optical Sum Frequency Generation Spectroscopy and Microscopy of Rice Grain at the Beginning of the Growing Process “ú–{•¨—Šw‰ï2016”NH‹G‘å‰ï •½¬‚Q‚W”N‚XŒŽ‚P‚T“úi‹à‘ò‘åŠwAƒ|ƒXƒ^[j
16-12)‚‹´ËŒáAæâ‰zAKhuat Thi Thu HienA…’JŒÜ˜Y ƒtƒFƒ€ƒg•bSHGŒ°”÷‹¾‚É‚æ‚é•ÄŽíŽq’f–Ê‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï2016”NH‹G‘å‰ï •½¬‚Q‚W”N‚XŒŽ‚P‚U“úi‹à‘ò‘åŠwAŒû“ªj
16-13)…’JŒÜ˜Y “ñŽŸ”ñüŒ`•ªŒõ–@‚ÆŒ°”÷‹¾‚É‚æ‚éSi(111)•\–Ê‚©‚ç‚Ì…‘f‚Ì’E—£‚¨‚æ‚Ñ ‹‘啪ŽqƒTƒNƒ‰ƒ“‚Ì‹ÃW‘Ì‚ÌŠÏŽ@(µ‘Òu‰‰) “Þ—Çæ’[‰ÈŠw‹Zp‘åŠw‰@‘åŠwŒõƒiƒmƒTƒCƒGƒ“ƒX“Á•Êu‹` •½¬‚Q‚W”N‚XŒŽ‚R‚O“úi“Þ—Çæ’[‘åŠwAŒû“ªj
16-14)…’JŒÜ˜YAæâ‰zAKhuat Thi Thu HienAHarvey N. RuttAKittima Amornwachirabodee, ‰ª“‡–ƒˆßŽq, ‹àŽq’B—Y SHGŒ°”÷‹¾‚É‚æ‚éƒTƒNƒ‰ƒ“‘@ˆÛ‚ƃTƒNƒ‰ƒ“”––Œ’†‚̈قȂÁ‚½‹ÃWó‘Ô‚ÌŠÏŽ@(“Á•Êu‰‰) ‘æ‚W‰ñƒTƒNƒ‰ƒ“Œ¤‹†‰ï •½¬‚Q‚W”N‚P‚OŒŽ‚P“úiŒF–{‘åŠwAŒû“ªj
16-15)‹{“à—ÇLAX‰º—ºA“c’†³rA‘å–ì^–çA…’JŒÜ˜YA—é–Ø—²‘¥ SiO2/Si(001)Šî”Âã‚Ì’P‘w‰»‡•¨”¼“±‘Ì‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶(SHG)M†‚ÌŽ_‰»–ŒŒú‚Ý‚É‚æ‚é‰e‹¿ “ú–{ŒõŠw‰ï”NŽŸŠwpu‰‰‰ïOPJ2016-Optics & Photonics Japan 2016 •½¬‚Q‚W”N‚P‚OŒŽ‚R‚O“ú|‚P‚PŒŽ‚Q“úi’}”g‘åŠw“Œ‹žƒLƒƒƒ“ƒpƒXABBj
15-1) ‹{“à—ÇLA—é–Ø—²‘¥AX‰º—ºA“c’†³rA‘å–ì^–çA…’JŒÜ˜Y SHGŒ°”÷•ªŒõƒVƒXƒeƒ€‚Ì\’z‚Æ”Œ´Žq‘wMoSe2‚Ì•ªŒõ‘ª’è “ú–{•¨—Šw‰ï‘æ‚V‚O‰ñ”NŽŸ‘å‰ï •½¬‚Q‚V”N‚RŒŽ‚Q‚P“úi‘ˆî“c‘åŠwAƒ|ƒXƒ^[j
15-2) æâ‰zCKhuat Thi Thu HienC…’JŒÜ˜YCŽO“‡—»‰îC‰ª“‡–ƒˆßŽqC‹àŽq’B—Y “ñŽŸ‚Ì”ñüŒ`ŒõŠwŒ°”÷‹¾‚É‚æ‚é”ñ‘ÎÌ«‚ÌŒŸo‚ð—p‚¢‚½’´‹‘啪ŽqƒTƒNƒ‰ƒ“‚Ì\‘¢•ªÍ “ú–{•¨—Šw‰ï‘æ‚V‚O‰ñ”NŽŸ‘å‰ï •½¬‚Q‚V”N‚RŒŽ‚Q‚Q“úi‘ˆî“c‘åŠwAŒû“ªj
15-3) …’JŒÜ˜Y Œõ˜aŽü”gŒ°”÷‹¾‚ÌŠJ”‚Ɖž—piµ‘Òu‰‰j 2014(•½¬26)”N“x‘æ‚S‰ñŒõÞ—¿E‰ž—p‹ZpŒ¤‹†‰ï •½¬‚Q‚V”N‚RŒŽ‚U“úi“ŒŠC‘åŠw‚—ÖƒLƒƒƒ“ƒpƒXAŒû“ªj
15-4) ²–ì—z”VA…’JŒÜ˜Y —Z‰ð‚É‚æ‚éInSb‚ÌŒõŠw‰ž“š•Ï‰»‚Ì‘æˆêŒ´—ŒvŽZ ‘æ‚V‚U‰ñ‰ž—p•¨—Šw‰ïH‹GŠwpu‰‰‰ï •½¬‚Q‚V”N‚XŒŽ‚P‚R“úi–¼ŒÃ‰®‘Û‰ï‹cêAŒû“ªj
15-5) Muhammad Samir Ullah, Siti Zulaikha Ngah Demon, Kazuki Matsumoto, Khuat Thi Thu Hien, Goro Mizutani, and Harvey Rutt Study of Optical Second Harmonic Interference Pattern at Interface between Iron Phthalocyanine Layer and Indium Tin Oxide “ú–{•¨—Šw‰ï2015”NH‹G‘å‰ï •½¬‚Q‚V”N‚XŒŽ‚P‚W“úiŠÖ¼‘åŠwç—¢ŽRƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j
15-6) æâ‰zA…’JŒÜ˜YAKhuat Thi Thu HienAKittima AmornwachirabodeeA‰ª“‡–ƒˆßŽqA‹àŽq’B—Y SHGŒ°”÷‹¾‚ð—p‚¢‚½’´‹‘啪ŽqƒTƒNƒ‰ƒ“‚Ì‹ÃW‘Ì‚Ì”ñ‘ÎÌŒŸo “ú–{•¨—Šw‰ï2015”NH‹G‘å‰ï •½¬‚Q‚V”N‚XŒŽ‚P‚W“úiŠÖ¼‘åŠwç—¢ŽRƒLƒƒƒ“ƒpƒXAƒ|ƒXƒ^[j
1) Hoang Chi Hieu, Nguyen Anh Tuan, Hongyan Li, Yoshihiro Miyauchi, and Goro Mizutani Study of molecular orientation in cellulose fibers by optical Sum frequency confocal microsopce “ú–{•¨—Šw‰ï‘æ‚U‚U‰ñ”NŽŸ‘å‰ï •½¬‚Q‚R”N‚RŒŽ‚Q‚T“úiVŠƒ‘åŠwAƒ|ƒXƒ^[FkЂŗ\e‚Ì‚Ýj
2) —›g‰A…’JŒÜ˜YA‹{“à—ÇLANguyen Anh Tuan ‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‚ð—p‚¢‚½‚à‚¿•Ä‚Ìãó“û‚ÌSFƒCƒ[ƒWƒ“ƒO “ú–{•¨—Šw‰ï‘æ‚U‚U‰ñ”NŽŸ‘å‰ï •½¬‚Q‚R”N‚RŒŽ‚Q‚T“úiVŠƒ‘åŠwAƒ|ƒXƒ^[FkЂŗ\e‚Ì‚Ýj
3) ‰iˆäŒh—SA“nç²—º•ãAÎŽRKŠìA‹{“à—ÇLA…’JŒÜ˜Y ‚•ª‰ð”\Œõ˜aŽü”g”¶Œ°”÷‹¾ƒVƒXƒeƒ€‚ÌŠJ”‚Ɖž—p “ú–{•¨—Šw‰ï‘æ‚U‚U‰ñ”NŽŸ‘å‰ï •½¬‚Q‚R”N‚RŒŽ‚Q‚V“úiVŠƒ‘åŠwAƒ|ƒXƒ^[FkЂŗ\e‚Ì‚Ýj
4) ¬–쓹^AŽR–{’B–çA㑺Œ’‘¾AHoang Hieu ChiA…’JŒÜ˜Y H2O‹z’…‚µ‚½Au(887)–Ê‚ÌSH•ªŒõ “ú–{•¨—Šw‰ï‘æ‚U‚U‰ñ”NŽŸ‘å‰ï •½¬‚Q‚R”N‚RŒŽ‚Q‚V“úiVŠƒ‘åŠwAƒ|ƒXƒ^[FkЂŗ\e‚Ì‚Ýj
5) …’JŒÜ˜Y ‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‚ÌŠJ”‚Ɖž—p(µ‘Òu‰‰) ƒŒ[ƒU[Œ°”÷‹¾Œ¤‹†‰ï‘æ‚R‚V‰ñu‰‰‰ï(SLM-37) •½¬‚Q‚R”N‚VŒŽ‚U“úi—‰»ŠwŒ¤‹†Š˜aŒõ–{ŠAŒû“ªj
6) ‹»ŽRÂA¬ì“ÖŽiA—›g‰A…’JŒÜ˜YA‹{“à—ÇLANguyen Anh Tuan ‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‚É‚æ‚锉肵‚½ƒ‚ƒ`•Ä’f–Ê‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï2011H‹G‘å‰ï •½¬‚Q‚R”N‚XŒŽ‚Q‚P“úi•xŽR‘åŠwAƒ|ƒXƒ^[j
7) ‚‹´Š°–¾A‹{“à—ÇLA…’JŒÜ˜Y TiO2•\–ʂ̃Xƒeƒbƒv\‘¢‚É‚¨‚¯‚éu‹ÇŠvƒ_ƒCƒiƒ~ƒbƒNƒX‚Ì‘I‘ð“I‚ÈŠÏŽ@ “ú–{•¨—Šw‰ï2011H‹G‘å‰ï •½¬‚Q‚R”N‚XŒŽ‚Q‚Q“úi•xŽR‘åŠwAŒû“ªj
8) ¬–쓹^A㑺Œ’‘¾AŽR–{’B–çAHoang Hieu Chi, …’JŒÜ˜Y H2O‹z’…‚µ‚½Au(887)ƒXƒeƒbƒv•\–Ê‚©‚ç‚ÌSHG‰ž“š “ú–{•¨—Šw‰ï2011H‹G‘å‰ï •½¬‚Q‚R”N‚XŒŽ‚Q‚R“úi•xŽR‘åŠwAŒû“ªj
9) Mohan Priyank, Mott Drrick, Yasushi Enomoto, Yasufumi Matsumura, Hiroaki Takahashi, Goro Mizutani, and Shinya Maenosono ‹àƒiƒm—±Žq‚ð’SŽ‚µ‚½ƒx[ƒ}ƒCƒgƒiƒmƒƒbƒhFƒvƒ‰ƒYƒ‚ƒjƒbƒNƒKƒXƒZƒ“ƒT[‚Æ‚µ‚Ẳž—p (Au nanoparticle Loaded Boehmite nanorods for Novel Plasmonic Gas Sensors) ‘æ63‰ñƒRƒƒCƒh‚¨‚æ‚ÑŠE–ʉ»Šw“¢˜_‰ïC •½¬‚Q‚R”N‚XŒŽ‚V|‚X“úi‹ž“s‘åŠwCŒû“ª)
10) 㑺Œ’‘¾A¬–쓹^AŽR–{’B–çAHoang Hieu ChiA…’JŒÜ˜Y SH•ªŒõ‚É‚æ‚éƒKƒX‹z’…‚µ‚½AuƒXƒeƒbƒv•\–Ê‚Ì“dŽq€ˆÊ‚ÌŒ¤‹† •½¬‚Q‚R”N“x‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”Šwpu‰‰‰ï •½¬‚Q‚R”N‚P‚PŒŽ‚P‚W“úi‹à‘ò‰ÌŒ€ÀAŒû“ªj
11) ‹»ŽRÂA¬ì“ÖŽiA—›g‰ANguyen Anh TuanA…’JŒÜ˜Y ”‰è‚µ‚½ƒ‚ƒ`•Ä’f–Ê‚Ì‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‘œ •½¬‚Q‚R”N“x‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”Šwpu‰‰‰ï •½¬‚Q‚R”N‚P‚PŒŽ‚P‚X“úi‹à‘ò‰ÌŒ€ÀAŒû“ªj
12) …’JŒÜ˜Y ‚•ª‰ð”\Œõ˜aŽü”gŒ°”÷‹¾‚ÌŠJ”iµ‘Òu‰‰j ‘æ‚Q‚T‰ñ“ú–{•ªŒõŠw‰ïŠÖ¼Žx•”Å‹ß‚Ì•ªŒõŠw‚Ìi•à‚ÉŠÖ‚·‚éu‰‰‰ï ‘æ‚U‰ñ“ú–{•ªŒõŠw‰ïÔŠOƒ‰ƒ}ƒ“•ªŒõ•”‰ïƒVƒ“ƒ|ƒWƒEƒ€ uÔŠOƒ‰ƒ}ƒ“•ªŒõ‚̶‘ÌŒv‘ª‚Ö‚Ì“WŠJv •½¬‚Q‚R”N‚P‚PŒŽ‚Q‚Q“úi‘åã“d‹C’ÊM‘åŠwAŒû“ªj
12) ‹»ŽRÂA¬ì“ÖŽiA—›g‰ANguyen Anh TuanA’·’J씎A‹{“à—ÇLA…’JŒÜ˜Y ‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‚É‚æ‚é“·Š„‚ꂤ‚é‚¿•Ä‚ÌŠÏŽ@ 2011”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ï •½¬‚Q‚R”N‚P‚PŒŽ‚Q‚U“úi•Ÿˆä‘åŠwAŒû“ªj
13) ¬ì“ÖŽiA‹»ŽRÂA—›g‰A²–ì—z”VA…’JŒÜ˜YA‹{“à—ÇL ¬ì“ÖŽiA‹»ŽRÂA—›g‰A²–ì—z”VA…’JŒÜ˜YA‹{“à—ÇL ‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‚ð—p‚¢‚½‹›ƒRƒ‰[ƒQƒ“‚ÌŠÏŽ@ •½¬‚Q‚R”N‚P‚PŒŽ‚Q‚U“úi•Ÿˆä‘åŠwAŒû“ªj
14) Ahmed Bakr El Basaty, Yoshihiro Miyauchi, Goro Mizutani, Toshinori Matsushima, and Hideyuki Murata Investigation of Heterojunction Interfaces in Organic Light Emitting Diodes by using Optical second Harmonic Generation Measurements “ú–{•¨—Šw‰ï2010H‹G‘å‰ï •½¬‚Q‚Q”N‚XŒŽ‚Q‚R“úi‘åã•{—§‘åŠwAŒû“ªj
15) “nç²—º•ãA‹{“à—ÇLAL£”ŽÍA…’JŒÜ˜Y ŠÑ“üŒ^‘‹‚ð—p‚¢‚½‚•ª‰ð”\’´^‹ó˜aŽü”gŒ°”÷‹¾‚ÌŠJ” “ú–{•¨—Šw‰ï2010H‹G‘å‰ï •½¬‚Q‚Q”N‚XŒŽ‚Q‚S“úi‘åã•{—§‘åŠwAƒ|ƒXƒ^[j
16) ”öŒ`—mˆêANguyen Anh TuanA…’JŒÜ˜Y MgOƒtƒ@ƒZƒbƒg‰»Šî”ÂãPtƒiƒmƒƒCƒ„[‚Ì’f–ÊŒ`ó•Ï‰»‚ÆŒõ‘æ“ñ‚’²”g”¶‚ÌŠÖŒW “ú–{•¨—Šw‰ï2010H‹G‘å‰ï •½¬‚Q‚Q”N‚XŒŽ‚Q‚T“úi‘åã•{—§‘åŠwAŒû“ªj
17)…’JŒÜ˜Y Œõ‚̘aŽü”g”¶Œ°”÷‹¾–@‚É‚æ‚éŒÅ‘Ì•\–ʂⶕ¨‘Ì‚ÌŠÏŽ@iµ‘Òu‰‰j ‘ˆî“c‘åŠwŠe–±‹L”OÞ—¿‹ZŒ¤Œ¤‹†ŠƒI[ƒvƒ“ƒZƒ~ƒi[ •½¬‚Q‚Q”N‚P‚OŒŽ‚Q‚X“úi‘ˆî“c‘åŠwAŒû“ªj
18) “nç²—º•ãA‹{“à—ÇLAL£”ŽÍA…’JŒÜ˜Y ’´‚^‹óŒõ˜aŽü”gŒ°”÷‹¾‚Ì‚•ª‰ð”\‰» ‘æ‚R‚O‰ñ•\–ʉȊwŠwpu‰‰‰ïE‘æ‚T‚P‰ñ^‹ó‚ÉŠÖ‚·‚é˜A‡u‰‰‰ï •½¬‚Q‚Q”N‚P‚PŒŽ‚S“úi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[Aƒ|ƒXƒ^[j
19) Γc—Y‹NA•½²^ˆêA‹{“à—ÇLA…’JŒÜ˜Y ƒAƒ‹ƒLƒ‹½’·‚̈قȂéSAMs–Œ‚̉Ž‹EÔŠOŒõ˜aŽü”g•ªŒõ–@ •½¬‚Q‚Q”N“x‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”Šwpu‰‰‰ï •½¬‚Q‚Q”N‚P‚PŒŽ‚Q‚O“úi‹à‘ò‘åŠwAŒû“ªj
20) Γc—Y‹NA•½²^ˆêA‹{“à—ÇLA…’JŒÜ˜Y ƒAƒ‹ƒLƒ‹½’·‚̈قȂéSAMs–Œ‚ÌŒõ˜aŽü”g•ªŒõ–@‚É‚æ‚錤‹† 2010”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ï •½¬‚Q‚Q”N‚P‚PŒŽ‚Q‚V“úi•xŽR‘åŠwAŒû“ªj
21) ŽR–{’B–çA¬–쓹^A㑺Œ’‘¾AHoang Chi HieuA…’JŒÜ˜Y …‹z’…‚³‚¹‚½Au(887)‚©‚ç‚ÌSH‰ž“š 2010”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ï •½¬‚Q‚Q”N‚P‚PŒŽ‚Q‚V“úi•xŽR‘åŠwAŒû“ªj
22) Hoang Chi HieuA Nguyen Anh Tuan, Hongyan Li, Yoshihiro Miyauchi, Goro Mizutani Optical Sum frequency confocal microscope observation of cellulose fibers 2010”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ï •½¬‚Q‚Q”N‚P‚PŒŽ‚Q‚V“úi•xŽR‘åŠwAŒû“ªj
23) ‚‹´Š°–¾A“nç²—º•ãA…’JŒÜ˜Y ‚r‚gC‚r‚e•ªŒõ‚É‚æ‚郋ƒ`ƒ‹Œ^TiO2•\–Ê‚É‚Å‚«‚éƒXƒeƒbƒv‚©‚ç‚Ì•â‘«€ˆÊ‚Ì‘I‘ð“I‚ÈŒŸo “ú–{•¨—Šw‰ï‘æ‚U‚T‰ñ”NŽŸ‘å‰ï •½¬‚Q‚Q”N‚RŒŽ‚Q‚P“úi‰ªŽR‘åŠwAŒû“ªj
24) Hoang Chi Hieu, Michizane Ono, Tetsuya Yamamoto, and Goro Mizutani Optical Second Harmonic Generation Study of CO Adsorption on Au(887) “ú–{•¨—Šw‰ï‘æ‚U‚T‰ñ”NŽŸ‘å‰ï •½¬‚Q‚Q”N‚RŒŽ‚Q‚Q“úi‰ªŽR‘åŠwAƒ|ƒXƒ^[j
25) ²–ì—z”VAW. Wolf, R. PodlouckyA…’JŒÜ˜YA•Ð–ì—@A㌴—mˆê Ni(110)-O•\–Ê‚Ì•\–ÊŒõŠw‰ž“š‚Ì‘æˆêŒ´—ŒvŽZ “ú–{•¨—Šw‰ï‘æ‚U‚T‰ñ”NŽŸ‘å‰ï •½¬‚Q‚Q”N‚RŒŽ‚Q‚Q“úi‰ªŽR‘åŠwAƒ|ƒXƒ^[j
26) ‹{“à—ÇLA²–ì—z”VA‰ª“cƒˆêA…’JŒÜ˜Y ƒpƒ‹ƒXŒõÆŽË‚µ‚½H-Si(111)–Ê‚ÌSF‘œ‚ÌLITDŒvŽZ‚É‚æ‚é‰ðÍ “ú–{•¨—Šw‰ï‘æ‚U‚T‰ñ”NŽŸ‘å‰ï •½¬‚Q‚Q”N‚RŒŽ‚Q‚Q“úi‰ªŽR‘åŠwAƒ|ƒXƒ^[j 27) N. T. X. Hoai, G. Mizutani, H. Hirose, Y. Miyauchi, and H. Sano A New Configuration of Optical Sum Frequency Vibrational Spectroscopyto Probe Chirality of Solutions of Bio-molecules “ú–{•¨—Šw‰ï‘æ‚U‚T‰ñ”NŽŸ‘å‰ï •½¬‚Q‚Q”N‚RŒŽ‚Q‚Q“úi‰ªŽR‘åŠwAƒ|ƒXƒ^[j
28) “nç²—º•ãA“c経õ‹KA…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiAŽR–{—YˆêAŒïÀGb Ž_‰»•¨Šó”–Ž¥«”¼“±‘Ì‚Ì•\–ÊŽ¥‰»ŠÏŽ@–@‚ÌŠJ” 2009”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ï •½¬‚Q‚P”N‚P‚QŒŽ‚T“úi‹à‘ò‘åŠwAŒû“ªj
29) ‘º–{‚¢‚ÂÝA…’JŒÜ˜YA—›g‰A‹{“à—ÇLA²–ì—z”V ‹¤Å“_Œõ˜aŽü”g”Œ°”÷‹¾‚ÌŽŽìIII 2009”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ï •½¬‚Q‚P”N‚P‚QŒŽ‚T“úi‹à‘ò‘åŠwAŒû“ªj
30) •½²^ˆêAAhmed Bakr El BasatyA’†ŽRmA‹{“à—ÇLA…’JŒÜ˜Y ƒtƒFƒ€ƒg•bƒŒ[ƒU[‰ÁH‚µ‚½SAMs–Œ‚ÌŒõ˜aŽü”gŒ°”÷•ªŒõ‚É‚æ‚錤‹† 2009”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ï •½¬‚Q‚P”N‚P‚QŒŽ‚T“úi‹à‘ò‘åŠwAŒû“ªj
31) …’JŒÜ˜YA‹{“à—ÇL “ñŽŸ‚Ì”ñüŒ`ŒõŠwŒ°”÷‹¾–@E•ªŒõ–@‚É‚æ‚é—L‹@”––ŒŠE–Ê‚ÌŠÏŽ@iµ‘Òu‰‰j ‰ž—p•¨—Šw‰ï@—L‹@•ªŽqEƒoƒCƒIƒGƒŒƒNƒgƒƒjƒNƒX•ª‰È‰ïŒ¤‹†‰ï ui‰»‚µ‘±‚¯‚é—L‹@•ªŽqEƒoƒCƒIƒGƒŒƒNƒgƒƒjƒNƒXv •½¬‚Q‚P”N‚UŒŽ‚P‚Q“úi–k—¤æ’[‘åŠwAŒû“ªj
32) Hien Thi Thu Khuat, Yoshihiro Miyauchi, and Goro Mizutani Construction of pump-probe time resolved optical sum frequency microscopy “ú–{•¨—Šw‰ï2009”NH‹G‘å‰ïA•½¬‚Q‚P”N‚XŒŽ‚Q‚T“úiŒF–{‘åŠwAŒû“ªj
33) ‹{“à—ÇLA²–ì—z”VAŽR‰ºŒ[A‰ª“cƒˆêA…’JŒÜ˜Y ƒpƒ‹ƒXŒõÆŽË‚µ‚½H:Si(111)–Ê‚Ì…‘f’E—£‚ÌSH,SFŒ°”÷‘œ‚Ì“¯ŽžŠÏŽ@(II) “ú–{•¨—Šw‰ï2009”NH‹G‘å‰ïA•½¬‚Q‚P”N‚XŒŽ‚Q‚T“úiŒF–{‘åŠwAŒû“ªj
34) A. B. El.Basaty, Y. Miyauchi, H. Nakayama, H. Sano, and G. Mizutani Investigation of Alkyl Self Assembly Monolayers (SAMs) by using Sum Frequency Microscopy (SFM) “ú–{•¨—Šw‰ï2009”NH‹G‘å‰ïA•½¬‚Q‚P”N‚XŒŽ‚Q‚U“úiŒF–{‘åŠwAƒ|ƒXƒ^[j
35) ”öŒ`—mˆêANguyen Anh Tuan, ‚£Ê•äA…’JŒÜ˜Y MgOŠî”ÂãPtƒiƒmƒƒCƒ„\‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶‚Ì•ÎŒõ•ûˆÊŠpˆË‘¶« “ú–{•¨—Šw‰ï2009”NH‹G‘å‰ïA•½¬‚Q‚P”N‚XŒŽ‚Q‚U“úiŒF–{‘åŠwAƒ|ƒXƒ^[j
36) —›g‰A…’JŒÜ˜YA‘º–{‚¢‚¸‚ÝA‹{“à—ÇLA²–ì—z”V ‹¤Å“_˜aŽü”gŒ°”÷‹¾‚ÌŽŽìII “ú–{•¨—Šw‰ï2009”NH‹G‘å‰ïA•½¬‚Q‚P”N‚XŒŽ‚Q‚U“úiŒF–{‘åŠwAƒ|ƒXƒ^[j
37) …’JŒÜ˜YA‹{“à—ÇL Œõ˜aŽü”gŒ°”÷‹¾‘•’u‚ÌŠJ”‚Ɖž—p “ú–{ŠwpU‹»‰ïƒ}ƒCƒNƒƒr[ƒ€ƒAƒiƒŠƒVƒX‘æ‚P‚S‚PˆÏˆõ‰ï ‘æ‚P‚R‚V‰ñŒ¤‹†‰ï •½¬‚Q‚P”N‚XŒŽ‚R‚O“úi–¼é‘åŠw–¼ŒÃ‰®‰wƒTƒeƒ‰ƒCƒgAŒû“ªjG 38) ‚‹´Š°–¾A“nç²—º•ãA…’JŒÜ˜Y ŽíX‚̃Xƒeƒbƒv‚ðŽ‚ƒ‹ƒ`ƒ‹Œ^TiO2‚Žw”–Ê‚©‚ç‚ÌSHG “ú–{•¨—Šw‰ï‘æ‚U‚S‰ñ‘å‰ïA•½¬‚Q‚P”N‚RŒŽ‚R‚O“úi—§‹³‘åŠwAŒû“ªj
39) “nç²—º•ãA“c経õ‹KA“’ó^—iA”ª”¦‰À¬A…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiAŽR–{—YˆêA•ÐŽR³ŽmAŒïÀG b Ž¥‰»—U‹NŒõ‘æ“ñ‚’²”g”¶‚ð—p‚¢‚½Co:rutile TiO2(110)•\–ÊŽ¥‰»‚ٕ̈û«‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï‘æ‚U‚S‰ñ‘å‰ïA•½¬‚Q‚P”N‚RŒŽ‚R‚O“úi—§‹³‘åŠwAŒû“ªj 40) ¬–쓹^AHoang Hieu ChiA…’JŒÜ˜Y SH•ªŒõ–@‚É‚æ‚é‘å‹C‹z’…‚µ‚½Au(887)‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï‘æ‚U‚S‰ñ‘å‰ïA•½¬‚Q‚P”N‚RŒŽ‚Q‚X“úi—§‹³‘åŠwAŒû“ªj 41) …’JŒÜ˜Yiµ‘Òu‰‰j Œõ˜aŽü”gŒ°”÷‹¾‚ÌŠJ”‚Ɖž—p —‰»ŠwŒ¤‹†ŠƒVƒ“ƒ|ƒWƒEƒ€ •½¬‚Q‚P”N‚RŒŽ‚Q‚S“úi—‰»ŠwŒ¤‹†ŠAŒû“ªj
42) “nç²—º•ãA“c経õ‹KA…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiAŽR–{—YˆêAŒïÀGb Ž¥‰»—U‹NŒõ‘æ“ñ‚’²”g”¶‚ð—p‚¢‚½Ž_‰»•¨Šó”–Ž¥«”¼“±‘Ì‚Ì•\–ÊŽ¥‰»‚ÌŠÏŽ@ —‰»ŠwŒ¤‹†ŠƒVƒ“ƒ|ƒWƒEƒ€ •½¬‚Q‚P”N‚RŒŽ‚Q‚S“úi—‰»ŠwŒ¤‹†ŠAƒ|ƒXƒ^[j
43) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y IRƒpƒ‹ƒXƒŒ[ƒU[ÆŽËŒã‚ÌH-Si(111)1x1•\–Ê‚Ì‹¤–“dŽq€ˆÊ‘œ‚Æ•ªŽqU“®‘œ‚Ì“¯ŽžŠÏŽ@ —‰»ŠwŒ¤‹†ŠƒVƒ“ƒ|ƒWƒEƒ€ •½¬‚Q‚P”N‚RŒŽ‚Q‚S“úi—‰»ŠwŒ¤‹†ŠAƒ|ƒXƒ^[j
44) …’JŒÜ˜Y “ñŽŸ‚Ì”ñüŒ`ŒõŠwŒ°”÷‹¾–@‚Æ•ªŒõ–@‚É‚æ‚éƒiƒm\‘¢‚ⶕ¨‚ÌŠÏŽ@(µ‘Òu‰‰) ‘ÛŠî“‹³‘åŠw‹³—{Šw•”Hot topics in Physics •½¬‚Q‚P”N‚QŒŽ‚P‚V“úi‘ÛŠî“‹³‘åŠwAŒû“ªj
45) …’JŒÜ˜Y Œõ˜aŽü”gŒ°”÷‹¾‚ÌŠJ”‚Ɖž—pŠÏŽ@ ‹ž“sEæ’[ƒiƒmƒeƒN‘‡Žx‰‡ƒlƒbƒgƒ[ƒN‘æ‚T‰ñƒiƒmƒeƒNƒVƒ“ƒ|ƒWƒEƒ€ •½¬‚Q‚O”N‚P‚QŒŽ‚P‚Q“úi“Þ—Çæ’[‘åŠwAŒû“ªj 46) “n•Ó—º•ãA‚‹´Š°–¾A…’JŒÜ˜Y SH•ªŒõ–@‚ð—p‚¢‚½ƒ‹ƒ`ƒ‹Œ^TiO2(441)–Ê‚É‚¨‚¯‚éƒXƒeƒbƒv€ˆÊ‚ÌŒŸo “ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ïA•½¬‚Q‚O”N‚P‚PŒŽ‚Q‚X“úi•Ÿˆä‘åHAŒû“ªj 47) “nç²—º•ãA“c経õ‹KA…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiAŽR–{—YˆêAŒïÀGb Žº‰·‘å‹Cˆ³‰º‚É‚¨‚¯‚éCo“Y‰Áƒ‹ƒ`ƒ‹TiO2‚Ì•\–ÊŽ¥‰»‚ٕ̈û«‚ÌŒ¤‹† ‚Q‚O‚O‚W”N“xŽÀ—p•\–Ê•ªÍu‰‰‰ï(PSA-08)A•½¬‚Q‚O”N‚P‚OŒŽ‚P‚S“úi“Œ–k‘åŠwAƒ|ƒXƒ^[j 48) A. T. Nguyen and
G. Mizutani
Nonlinear Optical Properties of Pt/Cu Bimetallic Nanowire Arrays “ú–{•¨—Šw‰ï‚Q‚O‚O‚W”NH‹G‘å‰ïA•½¬‚Q‚O”N‚XŒŽ‚Q‚P“úiŠâŽè‘åŠwAŒû“ªj 49) …’JŒÜ˜YAKitsakorn
LocharoenratA‹{“à—ÇLA²–ì—z”V ‹¤Å“_Œõ˜aŽü”gŒ°”÷‹¾‚ÌŽŽì “ú–{•¨—Šw‰ï‚Q‚O‚O‚W”NH‹G‘å‰ïA•½¬‚Q‚O”N‚XŒŽ‚Q‚Q“úiŠâŽè‘åŠwAƒ|ƒXƒ^[j 50) ‘O“c—mŽŸ˜YA…’JŒÜ˜YA‹{è‘å•ãA‹{•”ÉA“¡ˆäŒ[ŽjA²’|Ë•F ‹àƒXƒeƒbƒv‚Ì“ñŽŸ”ñüŒ`Š´Žó—¦¬•ªŠÔ‚̈ʑŠ·‚Ì‘ª’è “ú–{•¨—Šw‰ï‚Q‚O‚O‚W”NH‹G‘å‰ïA•½¬‚Q‚O”N‚XŒŽ‚Q‚Q“úiŠâŽè‘åŠwAƒ|ƒXƒ^[j 51) ‹{“à—ÇLA²–ì—z”VAŽR‰ºŒ[A‰ª“cƒˆêA…’JŒÜ˜Y ƒpƒ‹ƒXŒõÆŽË‚É‚æ‚éH-Si(111)–Ê‚Ì…‘f’E—£‚ÌSH,SFŒ°”÷‘œ‚Ì“¯ŽžŠÏŽ@ “ú–{•¨—Šw‰ï‚Q‚O‚O‚W”NH‹G‘å‰ïA•½¬‚Q‚O”N‚XŒŽ‚Q‚Q“úiŠâŽè‘åŠwAƒ|ƒXƒ^[j 52) ¬–쓹^A…’JŒÜ˜Y ‘å‹C‹z’…‚³‚¹‚½Au(887)‚©‚ç‚ÌSH‰ž“š “ú–{•¨—Šw‰ï‚Q‚O‚O‚W”NH‹G‘å‰ïA•½¬‚Q‚O”N‚XŒŽ‚Q‚Q“úiŠâŽè‘åŠwAƒ|ƒXƒ^[j 53) ‘O“c—mŽŸ˜YA…’JŒÜ˜YA‹{è‘å•ãA‹{•”ÉA“¡ˆäŒ[ŽjA²’|Ë•FAŠâˆä“N–ç
Au(887),(443)‚ÌŒõ‘æ“ñ‚’²”g•ªŒõ “ú–{•¨—Šw‰ï‘æ‚U‚R‰ñ‘å‰ïA•½¬‚Q‚O”N‚RŒŽ‚Q‚S“úi‹ß‹E‘åŠwAƒ|ƒXƒ^[j 54) “nç²—º•ãA“c経õ‹KA“’ó^—iA”ª”¦‰À¬A…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiAŽR–{—YˆêAŒïÀGb ƒtƒFƒ€ƒg•bƒŒ[ƒU[‚ð—p‚¢‚½Ž¥‰»—U‹NŒõ‘æ“ñ‚’²”gŠÏ‘ªƒVƒXƒeƒ€‚Ì\’z “ú–{•¨—Šw‰ï‘æ‚U‚R‰ñ‘å‰ïA•½¬‚Q‚O”N‚RŒŽ‚Q‚S“úi‹ß‹E‘åŠwAƒ|ƒXƒ^[j
55) “nç²—º•ãA“’ó^—iA”ª”¦‰À¬A…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiAŽR–{—YˆêAŒïÀGbA‹{“à—ÇLA ²–ì—z”VA…’JŒÜ˜Y Co:TiO2(110)‚É‚¨‚¯‚éƒoƒ‹ƒN‹zŽû”g’·—̈æ‚Å‚ÌŽ¥‰»—U‹NSHG‚ÌŠÏ‘ª “ú–{•¨—Šw‰ï‚Q‚O‚O‚V”Nt‹G‘å‰ïA•½¬‚P‚X”N‚RŒŽ‚Q‚O“úiŽŽ™“‡‘åŠwp.905PSj
56) Kitsakorn Locharoenrat, Haruuki Sano, and Goro Mizutani Spectroscopy of Copper Nanowire Structures: Experiment and Theory “ú–{•¨—Šw‰ï‚Q‚O‚O‚V”Nt‹G‘å‰ïA•½¬‚P‚X”N‚RŒŽ‚Q‚O“úiŽŽ™“‡‘åŠwp.910PSj
57) ‚£Ê•äAŠÞ“N‰›A—щĶAKitsakorn Locharoenrat¤…’JŒÜ˜YA“Œ—äFˆêA› Œ´º MgOŠî”Âã‚ÌPtƒiƒmƒƒCƒ„‚Ìì» “ú–{•¨—Šw‰ï‚Q‚O‚O‚V”Nt‹G‘å‰ïA•½¬‚P‚X”N‚RŒŽ‚Q‚O“úiŽŽ™“‡‘åŠwp.911PSj
58) ‹{“à—ÇLA²–ì—z”VAŽR‰ºŒ[A‰ª“cƒˆêA…’JŒÜ˜Y ƒpƒ‹ƒXŒõÆŽË‚µ‚½H-Si(111)–Ê‚©‚ç‚Ì…‘f’E—£‚Ì”ñüŒ`ŒõŠwŒ°”÷‹¾ “ú–{•¨—Šw‰ï‚Q‚O‚O‚V”Nt‹G‘å‰ïA•½¬‚P‚X”N‚RŒŽ‚Q‚P“úiŽŽ™“‡‘åŠwp.922j
59) …’JŒÜ˜Y “ñŽŸ‚Ì”ñüŒ`ŒõŠw‘œ‚ÅŠÏŽ@‚·‚éŒÅ‘Ì•\–Ê‚ÆA•¨(µ‘Òu‰‰) •\–Ê•ªÍŒ¤‹†‰ï‘æ‚R‚O‰ñŒ¤‹†‰ïA•½¬‚P‚X”N‚UŒŽ‚P‚W“úiŒyˆä‘òƒvƒŠƒ“ƒXƒzƒeƒ‹j
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61) –î’n•üLA‘噑¾‰ÀŽiA²–ì—z”VA…’JŒÜ˜Y SF•ªŒõ–@‚É‚æ‚éSAM–ŒŠE–Ê‚Ì…•ªŽq‚Ì’˜\‘¢‚ÉŠÖ‚·‚錤‹† “ú–{•¨—Šw‰ï‘æ‚U‚Q‰ñ‘å‰ïA•½¬‚P‚X”N‚XŒŽ‚Q‚Q“úi–kŠC“¹‘åŠwAƒ|ƒXƒ^[j
62) T. Nguyen, K. Locharoenrat, and G. Mizutani Fabrication of Pt-Cu bi-metal nanowires by shadow deposition on NaCl(110) templates “ú–{•¨—Šw‰ï‘æ‚U‚Q‰ñ‘å‰ïA•½¬‚P‚X”N‚XŒŽ‚Q‚Q“úi–kŠC“¹‘åŠwAƒ|ƒXƒ^[j
63) “nç²—º•ãA“c経õ‹KA“’ó^—iA”ª”¦‰À¬A…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽi ŽR–{—YˆêAŒïÀGb Co:TiO2(110)‚©‚ç‚ÌŽ¥‰»—U‹NSHŒõ‹“x‚Ì•ûˆÊŠpˆË‘¶« “ú–{•¨—Šw‰ï‘æ‚U‚Q‰ñ‘å‰ïA•½¬‚P‚X”N‚XŒŽ‚Q‚Q“úi–kŠC“¹‘åŠwAƒ|ƒXƒ^[j
64) “c経õ‹KA“nç²—º•ãA“’ó^—iA”ª”¦‰À¬A…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiA @@@ ŽR–{—YˆêAŒïÀGb ƒtƒFƒ€ƒg•bƒŒ[ƒU[‚ð—p‚¢‚½Co:rutile TiO2‚Ì”ñüŒ`ŒõŠw‰ž“š “ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ïA•½¬‚P‚X”N‚P‚QŒŽ‚P“úi•xŽRŒ§—§‘åAŒû“ªj 65) •\”ü‹IA…’JŒÜ˜YA¬X•¶•v Ž_‘fŒ‡Š×‚ðŠÜ‚Þƒ‹ƒ`ƒ‹Œ^TiO2(110)‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶ “ú–{•¨—Šw‰ï‘æ‚U‚P‰ñ”NŽŸ‘å‰ïA•½¬‚P‚W”N‚RŒŽ‚R‚O“úiˆ¤•Q‘åŠwp.896j
66) ‹{“à—ÇLA²–ì—z”VA“Œ—äFˆêA…’JŒÜ˜Y Ž‡ŠOŒõÆŽË‚É‚æ‚éSi‚̃_ƒ[ƒW—̈æ‚Ì•¨«•]‰¿ “ú–{•¨—Šw‰ï‘æ‚U‚P‰ñ”NŽŸ‘å‰ïA•½¬‚P‚W”N‚RŒŽ‚R‚O“úiˆ¤•Q‘åŠwp.903j
67) “nç²—º•ãA“’ó^—iA”ª”¦‰À¬A…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiA ŽR–{—YˆêAŒïÀGb Ž¥‰»—U‹NSHG–@‚É‚æ‚éCo‚ð“Y‰Á‚µ‚½ƒ‹ƒ`ƒ‹Œ^TiO2(110)‚Ì•\–ÊŽ¥«‚ÌŒ¤‹† “ú–{•¨—Šw‰ï‘æ‚U‚P‰ñ”NŽŸ‘å‰ïA•½¬‚P‚W”N‚RŒŽ‚R‚O“úiˆ¤•Q‘åŠwp.909j
68) Kitsakorn Locharoenrat, Akira Sugawara, Saho Takase, and Goro Mizutani Fabrication of Copper Nanowires on the NaCl(110) Faceted Surface “ú–{•¨—Šw‰ï‘æ‚U‚P‰ñ”NŽŸ‘å‰ïA•½¬‚P‚W”N‚RŒŽ‚R‚O“úiˆ¤•Q‘åŠwp.910j
69) Au(443)–Ê‚É‚¨‚¯‚éSHŒõ‹“xƒpƒ^[ƒ“‚Ì—ã‹NŒõ”g’·ˆË‘¶« ‘O“c—mŽŸ˜YA‹{•”ÉA“¡ˆäŒ[ŽjA²’|Ë•FAŠâˆä“N–çA…’JŒÜ˜Y “ú–{•¨—Šw‰ï‚Q‚O‚O‚U”NH‹G‘å‰ïA•½¬‚P‚W”N‚XŒŽ‚Q‚R“úiç—t‘åŠwp.724j
70) Cu(001)•\–Ê‚Ì”ñüŒ`ŒõŠw‰ž“š‚Ì‘æˆêŒ´—ŒvŽZ ²–ì—z”VA…’JŒÜ˜YAW. Wolf, R. PodlouckyA‹{‰ªGŽ¡A”Ñ·‘ñŽkA‰Í‘º‹IˆêA ¬X•¶•v “ú–{•¨—Šw‰ï‚Q‚O‚O‚U”NH‹G‘å‰ïA•½¬‚P‚W”N‚XŒŽ‚Q‚S“úiç—t‘åŠwp.729j
71) Œõ˜aŽü”g”¶(SFG)‚É‚æ‚éƒKƒ‰ƒX•\–Ê‹z’……•ªŽq‚Ì…˜a\‘¢‚ÌŒ¤‹† ²–ì—z”VA‹g“cŽ¡•FA‘噑¾‰ÀŽiA‘ºã“N—YA‚ìªGA‘å’J‹œA—RˆäL•FA …’JŒÜ˜Y “ú–{•¨—Šw‰ï‚Q‚O‚O‚U”NH‹G‘å‰ïA•½¬‚P‚W”N‚XŒŽ‚Q‚T“úiç—t‘åŠwp.755j
72) K. Locharoenrat, S. Takase, A. Sugawara, H. Sano, and G. Mizutani Linear Optical Response of Copper Nanowires “ú–{•¨—Šw‰ï‚Q‚O‚O‚U”NH‹G‘å‰ïA•½¬‚P‚W”N‚XŒŽ‚Q‚T“úiç—t‘åŠwp.760j
73) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y …‘’†‚Ì“b•²—±Žq‚ÌŒõ˜aŽü”gŒ°”÷‘œŠÏŽ@ “ú–{•¨—Šw‰ï‚Q‚O‚O‚U”NH‹G‘å‰ïA•½¬‚P‚W”N‚XŒŽ‚Q‚T“úiç—t‘åŠwp.628j
74) ²–ì—z”VA…’JŒÜ˜Y(µ‘Òu‰‰) ”ñüŒ`ŒõŠwŒ°”÷‹¾‚É‚æ‚éŒÅ‘Ì•\–ÊŠÏŽ@ ‘æ‚Q‚U‰ñ•\–ʉȊwu‰‰‘å‰ïA•½¬‚P‚W”N‚P‚PŒŽ‚X“úi‘åã‘åŠwj
75) “’ó^—iA“nç²—º•ãA”ª”¦‰À¬A…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiA ŽR–{—YˆêAŒïÀGb Ž¥‰»—U‹NSHG–@‚É‚æ‚éCo“Y‰ÁTiO2(110)‚ÌŽ¥«‹NŒ¹ 2006”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ï,•½¬‚P‚W”N‚P‚QŒŽ‚Q“úi‹à‘ò‘åŠwp.26j
76) H. Sano, H. Yoshida, T. Ooosugi, T. Murakami, Y. Takagawa, G. Mizutani, T. Ooya, and N. Yui SFG study of effect of polymer adsorption on water structure at the quartz/water interface •ªŽqŒ¤Œ¤‹†‰ïu˜aŽü”g•ªŒõ‚Å‘ñ‚•ªŽq‰ÈŠw‚ÌV“WŠJvi‘æ‚R‰ñSFGŒ¤‹†‰ïj •½¬‚P‚W”N‚P‚QŒŽ‚T“úi‰ªèƒRƒ“ƒtƒ@ƒŒƒ“ƒXƒZƒ“ƒ^[j
77) …’JŒÜ˜Y ”ñüŒ`•ªŒõ–@/Œ°”÷‹¾–@‚É‚æ‚銈«‚ðŽ‚Á‚½•¨Ž¿‚ÌŠÏŽ@–@‚ÌŠJ‘ñ(µ‘Òu‰‰) ‘åã‘åŠwŠî‘bHŠwŒ¤‹†‰ÈAŒÅ‘Ì•¨—ƒZƒ~ƒi[A•½¬‚P‚W”N‚P‚QŒŽ‚P‚R“ú
78) ²“¡‘ñA—é–ØŽõˆêAŽR“cÈ“ñA²–ì—z”VA…’JŒÜ˜Y GaAs(001)ãInSb”––Œ¬’·‚É‚¨‚¯‚éˆÙ•û«ŠiŽqŠÉ˜a ‘æ‚U‚U‰ñ‰ž—p•¨—Šw‰ïŠwpu‰‰‰ïA•½¬‚P‚V”N‚XŒŽ‚P‚O“úi“¿“‡‘åŠwj
79) —щĶAŠâˆä“N–çAàS‰–—¢Ž}ŽqAr•KˆêA›Œ´ºA²–ì—z”VA…’JŒÜ˜Y Œõ‘æ“ñ‚’²”g‚É‚æ‚éƒiƒmƒƒCƒ„‚É‚æ‚é”ñüŒ`•ªŒõ “ú–{•¨—Šw‰ï2005”NH‹G‘å‰ïA•½¬‚P‚V”N‚XŒŽ‚Q‚O“úi“¯ŽuŽÐ‘åŠw‹ž“sp.754j
80) •\”ü‹IA—é–ØDŒbA–k‰ªG˜aA…’JŒÜ˜Y ƒ‹ƒ`ƒ‹Œ^TiO2(110)‚ÆTiO2(001)‚©‚ç‚ÌSHG‚Ì“¯Žž‰ðÍ “ú–{•¨—Šw‰ï2005”NH‹G‘å‰ïA•½¬‚P‚V”N‚XŒŽ‚Q‚P“úi“¯ŽuŽÐ‘åŠw‹ž“sp.759j
81) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y Ž‡ŠOŒõÆŽË‚É‚æ‚éH-Si(111)–Ê‚©‚ç‚Ì…‘f’E—£‚ÌSHŒ°”÷‘œŠÏŽ@(II) “ú–{•¨—Šw‰ï2005”NH‹G‘å‰ïA•½¬‚P‚V”N‚XŒŽ‚Q‚P“úi“¯ŽuŽÐ‘åŠw‹ž“sp.760j
82) “n•Ó—º•ãA•\”ü‹IA…’JŒÜ˜Y ƒ‹ƒ`ƒ‹Œ^TiO2(001)ƒoƒ‹ƒN‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶ “ú–{•¨—Šw‰ï2005”NH‹G‘å‰ïA•½¬‚P‚V”N‚XŒŽ‚Q‚P“úi“¯ŽuŽÐ‘åŠw‹ž“sp.775j
83) ²–ì—z”VA…’JŒÜ˜YAW. Wolf, and R. Podloucky TiO2(110)•\–Ê‚ÌSH‰ž“š‚Ì‘æˆêŒ´—ŒvŽZ‚É‚æ‚é‰ðÍ ‘æ‚S‚U‰ñ^‹ó‚ÉŠÖ‚·‚é˜A‡u‰‰‰ïA•½¬‚P‚V”N‚P‚PŒŽ‚X“úiŠwK‰@‘åŠwj
84) …’JŒÜ˜Yiµ‘Òu‰‰j SFŒ°”÷‹¾‚ÌŽŽì ‘æ‚Q‰ñSFGŒ¤‹†‰ïA•½¬‚P‚V”N‚RŒŽ‚Q‚R“úi–¼ŒÃ‰®‘åŠwj
85) •\”ü‹IA²–ì—z”VA—«”•½AŽ›–ì–«A…’JŒÜ˜Y ƒ]ƒ‹ƒQƒ‹–@‚Å쬂µ‚½SiO2/TiO2(110)‚ÌŒõ‘æ“ñ‚’²”g•ªŒõ “ú–{•¨—Šw‰ï‘æ‚U‚O‰ñ”NŽŸ‘å‰ïA•½¬‚P‚V”N‚RŒŽ‚Q‚S“úi“Œ‹ž—‰È‘å–ì“cA‘æ‚S•ªûp.834j
86) “¡ˆäŒ[ŽjA²’|Ë•FAŠâˆä“N–çA…’JŒÜ˜Y Au(887)–Ê‚É‚¨‚¯‚éSHŒõ‹“xƒpƒ^[ƒ“‚Ì—ã‹NŒõ”g’·ˆË‘¶« “ú–{•¨—Šw‰ï‘æ‚U‚O‰ñ”NŽŸ‘å‰ïA•½¬‚P‚V”N‚RŒŽ‚Q‚S“úi“Œ‹ž—‰È‘å–ì“cA‘æ‚S•ªûp.848j
87) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y …‘fI’[Si(111)–Ê‚©‚ç‚ÌŽ‡ŠOŒõÆŽË‚É‚æ‚é…‘f’E—£‚ÌSHŒ°”÷‘œŠÏŽ@ ‘æ‚S‚T‰ñ^‹ó‚ÉŠÖ‚·‚é˜A‡u‰‰‰ïA•½¬‚P6”N‚P‚OŒŽ‚Q‚W“úi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[j
88) ²’|Ë•FAŠâˆä“N–çA…’JŒÜ˜Y SH•ªŒõ–@‚É‚æ‚éAu(887)•\–ʃiƒmƒXƒeƒbƒv‚Ì“dŽqó‘ÔŒ¤‹† ‘æ‚S‚T‰ñ^‹ó‚ÉŠÖ‚·‚é˜A‡u‰‰‰ïA•½¬‚P6”N‚P‚OŒŽ‚Q‚W“úi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[j
89) ”ª”¦‰À¬ASoe Myint MaungA…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiAŽR–{—YˆêAŒïÀGb Ž¥‰»—U‹NSHG–@‚ð—p‚¢‚½Co:TiO2‚Ì•\–Ê‚ÌŽ¥«‚ÌŒ¤‹† “ú–{•¨—Šw‰ï2004”NH‹G‘å‰ïA•½¬‚P6”N‚XŒŽ‚P‚S“úiÂX‘åŠwj
90) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y Ž‡ŠOŒõÆŽË‚É‚æ‚éH-Si(111)–Ê‚©‚ç‚Ì…‘f’E—£‚ÌSHŒ°”÷‘œŠÏŽ@ “ú–{•¨—Šw‰ï2004”NH‹G‘å‰ïA•½¬‚P6”N‚XŒŽ‚P5“úiÂX‘åŠwp.825j
91) ²’|Ë•FAŠâˆä“N–çA…’JŒÜ˜Y Au(887)–Ê‚ÌSHŒõ‹“x‚Ì•ÎŒõŠp“xˆË‘¶« “ú–{•¨—Šw‰ï2004”NH‹G‘å‰ïA•½¬‚P6”N‚XŒŽ‚P5“úiÂX‘åŠwp.825j
92) ‰F“s‹{‰plA]Œû—DAL£”ŽÍA²–ì—z”VA…’JŒÜ˜YA‘å’J‹œA—RˆäL•F ƒ}ƒ‹ƒg[ƒX-ƒ|ƒŠƒƒ^ƒLƒTƒ“Œ‹‡‘Ì‚ÆConA‚Æ‚Ì‘½‰¿‘ŠŒÝì—p‚É‚¨‚¯‚酂̃Nƒ‰ƒXƒ^[\‘¢‚Æ‚ÌŠÖ˜A ‘æ‚R‚R‰ñˆã—p‚•ªŽqƒVƒ“ƒ|ƒWƒEƒ€A•½¬‚P‚U”N‚VŒŽ‚Q‚U“úiã’q‘åŠwj
93) ‘å’J‹œA‰F“s‹{‰plA]Œû—DAL£”ŽÍA²–ì—z”VA…’JŒÜ˜YA—RˆäL•F ƒ}ƒ‹ƒg[ƒX-ƒ|ƒŠƒƒ^ƒLƒTƒ“Œ‹‡‘Ì‚ÆConA‚Æ‚Ì‘½‰¿‘ŠŒÝì—p‘‹‹@\ ‘æ‚T‚R‰ñ‚•ªŽqŠw‰ï”NŽŸ‘å‰ïA•½¬‚P‚U”N‚TŒŽ‚Q‚T“úi_ŒË‘Û‰ï‹cêj
94) L£”ŽÍA²–ì—z”VA…’JŒÜ˜YA]Œû—DA‘å’J‹œA—RˆäL•F “œ‚ðÚ‡‚µ‚½ƒ|ƒŠƒƒ^ƒLƒTƒ“‚Ì…˜a\‘¢ “ú–{•¨—Šw‰ï‘æ‚T‚X‰ñ”NŽŸ‘å‰ïA•½¬‚P‚U”N‚RŒŽ‚Q‚V“úi‹ãB‘åŠwj
95) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y …¶A•¨’†‚ÌÔŠO‰ÂŽ‹˜aŽü”g”¶Œ°”÷‘œŠÏŽ@ “ú–{•¨—Šw‰ï‘æ‚T‚X‰ñ”NŽŸ‘å‰ïA•½¬‚P‚U”N‚RŒŽ‚R‚O“úi‹ãB‘åŠwj
96) àS‰–—¢Ž}ŽqAr•KˆêA›Œ´ºAŠâˆä“N–çA…’JŒÜ˜Y ”’‹àƒiƒmƒƒCƒ„‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶ “ú–{•¨—Šw‰ï‘æ‚T‚X‰ñ”NŽŸ‘å‰ïA•½¬‚P‚U”N‚RŒŽ‚R‚O“úi‹ãB‘åŠwj
97) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y SHGŒ°”÷‹¾‚ÌŠJ”‚Æ…’†A•¨’†‚Ì“b•²—±Žq‚ÌŠÏŽ@ •½¬15”N“x‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”Šwpu‰‰‰ïA•½¬‚P‚T”N‚P‚QŒŽ‚P‚S“úi–k—¤æ’[‘åj
98) Šâˆä“N–çA…’JŒÜ˜Y SH•ªŒõ‚É‚æ‚é•\–ÊÄ\¬‚ª•\–Ê“dŽq€ˆÊ‚É—^‚¦‚é‰e‹¿‚ÌŠÏŽ@ •½¬15”N“x‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”Šwpu‰‰‰ïA•½¬‚P‚T”N‚P‚QŒŽ‚P‚S“úi–k—¤æ’[‘åj
99) —é–ØDŒbA•\”ü‹IA–k‰ªG˜aA…’JŒÜ˜Y HFˆ—‚µ‚½ƒ‹ƒ`ƒ‹Œ^TiO2(110)‚ÌŒõ‘æ“ñ‚’²”g”¶ •½¬15”N“x‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”Šwpu‰‰‰ïA•½¬‚P‚T”N‚P‚QŒŽ‚P‚S“úi–k—¤æ’[‘åj
100) r•KˆêA›Œ´ºAŠâˆä“N–çA…’JŒÜ˜Y ”’‹àƒiƒmƒƒCƒ„‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶ •½¬15”N“x‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”Šwpu‰‰‰ïA•½¬‚P‚T”N‚P‚QŒŽ‚P‚S“úi–k—¤æ’[‘åj
101) Šâˆä“N–çA…’JŒÜ˜Y Au(100)Ä\¬•\–Ê‚ÅŠÏ‘ª‚³‚ꂽ•\–Ê“dŽq€ˆÊ‚Ì“Á« 2003”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ïA•½¬‚P‚T”N‚P‚PŒŽ‚Q‚Q“úi‹à‘ò‘åŠw—Šw•”j
102) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y SHŒ°”÷‹¾‚É‚æ‚é…’†A•¨’†‚Ì“b•²—±Žq‚ÌŠÏŽ@ 2003”N“x“ú–{•¨—Šw‰ï–k—¤Žx•”’è—áŠwpu‰‰‰ïA•½¬‚P‚T”N‚P‚PŒŽ‚Q‚Q“úi‹à‘ò‘åŠw—Šw•”j
103) Šâˆä“N–çA…’JŒÜ˜Y Œõ‘æ‚Q‚’²”gƒXƒyƒNƒgƒ‹‚Ì•ÎŒõˆË‘¶«‚É‚æ‚éAu(100)Ä\¬•\–Ê‚Ì“dŽqó‘Ԃ̉ðÍ ‘æ44‰ñ^‹ó‚ÉŠÖ‚·‚é˜A‡u‰‰‰ïA•½¬‚P‚T”N‚P‚PŒŽ‚P‚R“úi‹@ŠBU‹»‰ïŠÙj
104) Šâˆä“N–çA…’JŒÜ˜Y SH•ªŒõ–@‚É‚æ‚éAu(100)5~20\‘¢‚Ì•\–Ê“dŽqó‘Ô‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï2003”NH‹G‘å‰ïA•½¬‚P‚T”N‚XŒŽ‚Q‚O“úi‰ªŽR‘åŠwj
105) L£”ŽÍA²–ì—z”VA…’JŒÜ˜YA]Œû—DA‘å’J‹œA—RˆäL•F ŠÂ󕪎q”‚̈قȂéƒ|ƒŠƒƒ^ƒLƒTƒ“…—n‰t’†‚Ì…ƒNƒ‰ƒXƒ^[\‘¢‚̃‰ƒ}ƒ“ŠÏŽ@ “ú–{•¨—Šw‰ï2003”NH‹G‘å‰ïA•½¬‚P‚T”N‚XŒŽ‚Q‚P“úi‰ªŽR‘åŠwj
106) ²–ì—z”VA…’JŒÜ˜YAW. Wolf, R. Podloucky ƒ‹ƒ`ƒ‹Œ^TiO2(110)•\–Ê‚ÌŒõŠw‰ž“š‚Ì‘æˆêŒ´—ŒvŽZ “ú–{•¨—Šw‰ï2003”NH‹G‘å‰ïA•½¬‚P‚T”N‚XŒŽ‚Q‚O“úi‰ªŽR‘åŠwj
107) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y ”ñüŒ`ŒõŠwŒ°”÷‹¾‚ÌŠJ”‚Æ…‘’†‚Ì“b•²—±Žq‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï2003”NH‹G‘å‰ïA•½¬‚P‚T”N‚XŒŽ‚Q‚Q“úi‰ªŽR‘åŠwj
108) …’JŒÜ˜Y SHŒ°”÷‹¾–@‚É‚æ‚éŒÅ‘Ì•\–ÊŠE–ÊŠÏŽ@iµ‘Òu‰‰j “ú–{•¨—Šw‰ï‘æ‚T‚W‰ñ”NŽŸ‘å‰ïA•½¬‚P‚T”N‚RŒŽ‚Q‚X“úi“Œ–k‘åŠwA‘æ‚S•ªûp.709j
109) …’JŒÜ˜YA–kŒ´•A›Œ´ºA²–ì—z”V NaCl(110)ƒeƒ“ƒvƒŒ[ƒgã‚ÌAuƒiƒm×ü‚ÌŒõ‘æ“ñ‚’²”g•ªŒõ “ú–{•¨—Šw‰ï‘æ‚T‚W‰ñ”NŽŸ‘å‰ïA•½¬‚P‚T”N‚RŒŽ‚R‚P“úi“Œ–k‘åŠwA‘æ‚S•ªûp.887j
110) ¬ŽR–L°A…’JŒÜ˜Y ÔŠOE‰ÂŽ‹Œõ˜aŽü”g”¶Œ°”÷‹¾ƒVƒXƒeƒ€‚ÌŠJ” “ú–{•¨—Šw‰ï‘æ‚T‚W‰ñ”NŽŸ‘å‰ïA•½¬‚P‚T”N‚RŒŽ‚R‚O“úi“Œ–k‘åŠwA‘æ‚S•ªûp.733j
111) …’JŒÜ˜YA–kŒ´•A›Œ´ºA²–ì—z”V Œõ‘æ“ñ‚’²”g•ªŒõ–@‚É‚æ‚éNaCl(110)ƒtƒ@ƒZƒbƒg–Êã‚ÌAuƒiƒmƒƒCƒ„‚ÌŒ¤‹† ƒiƒmŠw‰ï‘n—§‘å‰ïA•½¬‚P‚T”N‚TŒŽ‚R‚O“úi_ŒË‘åŠwAp.152j
112) ²–ì—z”VA…’JŒÜ˜YAW. Wolf, R. Podloucky Si(111)•\–Ê‚ÌŒõŠw‰ž“š‚Ì‘æˆêŒ´—ŒvŽZ ƒiƒmŠw‰ï‘n—§‘å‰ïA•½¬‚P‚T”N‚TŒŽ‚R‚O“úi_ŒË‘åŠwAp.185j
113) –kŒ´•A›Œ´ºA²–ì—z”VA…’JŒÜ˜Y NaCl(110)ƒeƒ“ƒvƒŒ[ƒgã‚ÉŽ©ŒÈ‘gD‰»¬’·‚µ‚½Auƒiƒm×ü‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶ “ú–{•¨—Šw‰ï2002”NH‹G‘å‰ïA•½¬‚P‚S”N‚XŒŽ‚U“úi’†•”‘åŠwA‘æ‚S•ªûp.750j
114) Šâˆä“N–çA…’JŒÜ˜Y Au(100)Ä\¬•\–Ê‚ÌSHƒXƒyƒNƒgƒƒXƒRƒs[ “ú–{•¨—Šw‰ï2002”NH‹G‘å‰ïA•½¬‚P‚S”N‚XŒŽ‚U“úi’†•”‘åŠwA‘æ‚S•ªûp.728j
115) …’JŒÜ˜YA²–ì—z”VA‘å’J‹œA—RˆäL•F ’´•ªŽq‚É‚¨‚¯‚é…‚Ì\‘¢iµ‘Òu‰‰j ‘æ‚S‰ñƒŠƒ“ƒOEƒ`ƒ…[ƒu’´•ªŽqŒ¤‹†‰ïu’´•ªŽq‚Ì‹@”\‰»v •½¬‚P‚S”N‚P‚PŒŽ‚P“úiŒ¤‹†¬‰ÊŠˆ—pƒvƒ‰ƒUÎìj
116) ‘å‹´O–¾A²–ì—z”VA…’JŒÜ˜Y SH•ªŒõ–@‚É‚æ‚éGe(111)´ò•\–Ê‚ÌŒ¤‹† “ú–{•¨—Šw‰ï‘æ‚T‚V‰ñ”NŽŸ‘å‰ïA•½¬‚P‚S”N‚RŒŽ‚Q‚T“úi—§–½ŠÙ‘åp.831j
117) ’r“c‡ˆêA²–ì—z”VA…’JŒÜ˜Y ”g’·‰Â•ÏSHŒ°”÷‹¾‚É‚æ‚éƒVƒŠƒRƒ“‚Ì•sƒ•¨ƒh[ƒvƒpƒ^[ƒ“‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï‘æ‚T‚V‰ñ”NŽŸ‘å‰ïA•½¬‚P‚S”N‚RŒŽ‚Q‚T“úi—§–½ŠÙ‘åp.831j
118) ²–ì—z”VA…’JŒÜ˜YAW. WolfAR. Podloucky Si(111)•\–Ê‚ÌüŒ`‹y‚Ñ”ñüŒ`ŒõŠw‰ž“š‚Ì‘æˆêŒ´—ŒvŽZ “ú–{•¨—Šw‰ï‘æ‚T‚V‰ñ”NŽŸ‘å‰ïA•½¬‚P‚S”N‚RŒŽ‚Q‚T“úi—§–½ŠÙ‘åp.839j
119) •\”ü‹IA…’JŒÜ˜Y SiO2‘w‘ÍÏ‚É‚æ‚éTiO2(110)‚©‚ç‚ÌSHŒõ‹“x‚̕ω» “ú–{•¨—Šw‰ï‘æ‚T‚V‰ñ”NŽŸ‘å‰ïA•½¬‚P‚S”N‚RŒŽ‚Q‚T“úi—§–½ŠÙ‘åp.839j
120) Œ@“c–FŒhA²–ì—z”VA…’JŒÜ˜Y ‰ÂŽ‹-ÔŠO˜aŽü”g”¶(SFG)–@‚É‚æ‚éƒfƒ“ƒvƒ“ŽŽ—¿‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï‘æ‚T‚V‰ñ”NŽŸ‘å‰ïA•½¬‚P‚S”N‚RŒŽ‚Q‚V“úi—§–½ŠÙ‘åj
121) …’JŒÜ˜Y •\–ÊŒõ‘æ“ñ‚’²”gŒ°”÷‹¾‚ÌŠJ”‚Æ‚»‚̉ž—piµ‘Òu‰‰j ƒŒ[ƒU[Šw‰ïŠwpu‰‰‰ï‘æ‚Q‚Q‰ñ”NŽŸ‘å‰ïA•½¬‚P‚S”N‚PŒŽ‚Q‚T“úi‘åã‘ی𗬃Zƒ“ƒ^[j
122) ‘º”ö”ü‹IA…’JŒÜ˜Y TiO2(110)ã‚ÌSiO2”––Œ‚Ì”ñüŒ`ŒõŠwŒø‰Ê ‘æ‚S‚Q‰ñ^‹ó‚ÉŠÖ‚·‚é˜A‡u‰‰‰ïA•½¬‚P‚R”N‚P‚OŒŽ‚P‚X“úi‹@ŠBU‹»‰ïŠÙAp272j
123) ²–ì—z”VCŽRŠÝº”VCŒI“c~ˆêC…’JŒÜ˜YC£ŒËŒå Cd1-xZnxTe‚ÌSH•ªŒõ “ú–{•¨—Šw‰ï‚Q‚O‚O‚P”NH‹G‘å‰ïA•½¬‚P‚R”N‚XŒŽ‚P‚V“úi“¿“‡•¶—‘åŠwp.569j
124) –kŒ´•C“c’†‰pŽ÷C¼‰ª‹BlC…’JŒÜ˜Y NaCl(100)ã‚ÌAu(100)“‡ó–Œ‚ÌŒõ‘æ“ñ‚’²”g•ªŒõ “ú–{•¨—Šw‰ï‚Q‚O‚O‚P”NH‹G‘å‰ïA•½¬‚P‚R”N‚XŒŽ‚P‚X“úi“¿“‡•¶—‘åŠwAp.755j
125) ‹T’J”¹C…’JŒÜ˜YC΋´’¼‘åC’†‘º‘•cCŠÖ’J—²•vCŒI“ci •\–ÊSH•ªŒõ–@‚É‚æ‚éƒAƒiƒ^[ƒ[Œ^TiO2(001)–Ê‚ÌŒ¤‹† “ú–{•¨—Šw‰ï‚Q‚O‚O‚P”NH‹G‘å‰ïA•½¬‚P‚R”N‚XŒŽ‚P‚X“úi“¿“‡•¶—‘åŠwAp.756j
126) ‹{‰ªGŽ¡C…’JŒÜ˜YAC²–ì—z”VC‘º”ö”ü‹IC’†’ÒŠ°C¬X•¶•v Ž_‘fŒ‡Š×‚Ì‚ ‚éTiO2‚Ì“d‹C“I“Á«‚ÆŒ‡Š×ˆÚ“® “ú–{•¨—Šw‰ï‚Q‚O‚O‚P”NH‹G‘å‰ïA•½¬‚P‚R”N‚XŒŽ‚Q‚O“úi“¿“‡•¶—‘åŠwj
127) ‹T’J”¹A΋´’¼‘åA’†‘º‘•cA…’JŒÜ˜YAŠÖ’J—²•vAŒI“ci •\–ÊSH•ªŒõ–@‚É‚æ‚éŒõG”}ƒAƒiƒ^[ƒ[Œ^TiO2‚ÌŒ¤‹† Œõ‰»Šw“¢˜_‰ïA•½¬‚P‚R”N‚XŒŽ‚P‚R“úi‹à‘òŽs•¶‰»ƒz[ƒ‹j
128) ‹{‰ªGŽ¡A‹v¢‘׎mA²–ì—z”VAXG°A…’JŒÜ˜YA‘å’ËM—YAŽ›–ì–« MgCl2/Ag”––Œ‚̃‰ƒ}ƒ“•ªŒõ–@‚É‚æ‚éŠÏŽ@ “ú–{•¨—Šw‰ï‘æ‚T‚U‰ñ”NŽŸ‘å‰ïA•½¬‚P‚R”N‚RŒŽ‚R‚O“úi’†‰›‘åŠw‘½–€ƒLƒƒƒ“ƒpƒXAp.828j
129) ‘º”ö”ü‹IA¬—щpˆêA…’JŒÜ˜Y SiO2‚ªÍo‚µ‚½ƒ‹ƒ`ƒ‹Œ^TiO2(110)/H2O‚ÌŒõ‘æ“ñ‚’²”giSHj•ªŒõ “ú–{•¨—Šw‰ï‘æ‚T‚U‰ñ”NŽŸ‘å‰ïA•½¬‚P‚R”N‚RŒŽ‚R‚O“úi’†‰›‘åŠw‘½–€ƒLƒƒƒ“ƒpƒXAp.830j
130) ‹v•ÄŽ¡A²–ì—z”VA…’JŒÜ˜Y ‹à‘®‰ñÜŠiŽq•\–Ê‚ÌSHŒõ‹“x•ª•zŠÏ‘ªII “ú–{•¨—Šw‰ï‘æ‚T‚U‰ñ”NŽŸ‘å‰ïA•½¬‚P‚R”N‚RŒŽ‚R‚O“úi’†‰›‘åŠw‘½–€ƒLƒƒƒ“ƒpƒXAp.830j
131) ‘º”ö”ü‹IA¬—щpˆêA…’JŒÜ˜Y SiO2‚ªÍo‚µ‚½ƒ‹ƒ`ƒ‹Œ^TiO2(110)/H2O‚ÌŒõ‘æ“ñ‚’²”g”¶ “ú–{•¨—Šw‰ï‘æ‚T‚T‰ñ”NŽŸ‘å‰ïA•½¬‚P‚Q”N‚XŒŽ‚Q‚Q“úiVŠƒ‘åŠwAp.750j
132) ‘å‹´O–¾A²–ì—z”VA…’JŒÜ˜Y Ge/Ž_‰»–ŒŠE–Ê‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g•ªŒõ‘ª’è “ú–{•¨—Šw‰ï‘æ‚T‚T‰ñ”NŽŸ‘å‰ïA•½¬‚P‚Q”N‚XŒŽ‚Q‚Q“úiVŠƒ‘åŠwAp.750j
133) …’JŒÜ˜YA‰€“cNKA²–ì—z”VA’ª“cŽ‘Ÿ ’´‚^‹óŒõ‘æ“ñ‚’²”gŒ°”÷‹¾ “ú–{•¨—Šw‰ï2000”Nt‚Ì•ª‰È‰ïA•½¬‚P‚Q”N‚RŒŽ‚Q‚Q“úiŠÖ¼‘åAp.755j
134) ²–ì—z”VA‹v¢‘׎mAˆê‹M_A…’JŒÜ˜YA’ª“cŽ‘ŸA‘å’J‹œA—RˆäL•F ƒ‰ƒ}ƒ“ŽU—‚É‚æ‚é‹[ƒ|ƒŠƒƒ^ƒLƒTƒ“‚Ì…•ªŽqƒNƒ‰ƒXƒ^[‚Ì’˜ó‘Ô‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï2000”Nt‚Ì•ª‰È‰ïA•½¬‚P‚Q”N‚RŒŽ‚Q‚Q“úiŠÖ¼‘åAp.279j
135) ΋´’¼‘åA’†‘º‘•cA…’JŒÜ˜YA’ª“cŽ‘ŸAŠÖ’J—²•vAŒI“ci ƒAƒiƒ^[ƒ[Œ^TiO2(101)–Ê‚ÌSHŒõ‹“xƒpƒ^[ƒ“‚Ì“üŽËŒõŽqƒGƒlƒ‹ƒM[ˆË‘¶« “ú–{•¨—Šw‰ï2000”Nt‚Ì•ª‰È‰ïA•½¬‚P‚Q”N‚RŒŽ‚Q‚S“úiŠÖ¼‘åAp.780j
136) –kŒ´•A“c’†‰pŽ÷A˜e–{—T”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ SH•ªŒõ–@‚ð—p‚¢‚½NaCl(100)™œŠJ–Êã‚ÌAu”––Œ‚ÌŒ¤‹† “ú–{•¨—Šw‰ï1999”NH‚Ì•ª‰È‰ïA•½¬‚P‚P”N‚XŒŽ‚Q‚S“úiŠâŽè‘åAp.813j
137) ’†‘º‘•cA¼“cŒ«Ž¡AŽá™‘וãA¬—щpˆêA…’JŒÜ˜YA’ª“cŽ‘ŸAŠÖ’J—²•vAŒI“ci •\–ÊSH•ªŒõ–@‚É‚æ‚éƒAƒiƒ^[ƒ[Œ^TiO2‚ÌŒ¤‹† “ú–{•¨—Šw‰ï1999”NH‚Ì•ª‰È‰ïA•½¬‚P‚P”N‚XŒŽ‚Q‚S“úiŠâŽè‘åAp.815j
138) ‹{‰ªGŽ¡A‹v¢‘׎mA²–ì—z”VAXG°A…’JŒÜ˜YA’ª“cŽ‘ŸA‘å’ËM—YAŽ›–ì–« ƒ‰ƒ}ƒ“•ªŒõ–@‚É‚æ‚éa-TiCl3‚ÌŠiŽqU“®ƒXƒyƒNƒgƒ‹‚ÌŠÏŽ@ ‘æ‚S‚W‰ñ‚•ªŽq“¢˜_‰ïA•½¬‚P‚P”N‚P‚OŒŽ‚V“úiVŠƒ‘åAp.1357j
139) ŒI“c~ˆêA²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘ŸA£ŒËŒå Œõ‘æ“ñ‚’²”g”¶(SHG)–@‚É‚æ‚éCdTe‹É«•\–Ê‚ÌŒ¤‹† “ú–{•¨—Šw‰ï–k—¤Žx•”E‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”‡“¯u‰‰‰ïA•½¬‚P‚P”N‚P‚QŒŽ‚S“úi•Ÿˆä‘åŠwAp.86j
140) ’†‘º‘•cA¼“cŒ«Ž¡AŽá™‘וãA¬—щpˆêA…’JŒÜ˜YA’ª“cŽ‘ŸAŠÖ’J—²•vAŒI“ci •\–ÊSH–@‚É‚æ‚éƒAƒiƒ^[ƒ[Œ^TiO2(101)–Ê‚ÌŒ¤‹† “ú–{•¨—Šw‰ï–k—¤Žx•”E‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”‡“¯u‰‰‰ïA•½¬‚P‚P”N‚P‚QŒŽ‚S“úi•Ÿˆä‘åŠwAp.86j
141) –kŒ´•A“c’†‰pŽ÷A˜e–{—T”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ Œõ‘æ“ñ‚’²”g•ªŒõ–@‚É‚æ‚éNaCl(100)™œŠJ–Êã‚ÌAu”––Œ‚ÌŒ¤‹† ‘æ‚S‚O‰ñ^‹ó‚ÉŠÖ‚·‚é˜A‡u‰‰‰ïA•½¬‚P‚P”N‚P‚PŒŽ‚P‚Q“ú i‹@ŠBU‹»‰ïŠÙAp250j
142) ‹{‰ªGŽ¡A‹v¢‘׎mA²–ì—z”VAXG°A…’JŒÜ˜YA’ª“cŽ‘ŸA‘å’ËM—YAŽ›–ì–« Šˆ«“x‚̈قȂéZiegler-NattaG”}‚ÌXü‰ñÜ‹y‚у‰ƒ}ƒ“ŽU—ŠÏŽ@ “ú–{•¨—Šw‰ï‘æ‚T‚S‰ñ”N‰ïA•½¬‚P‚P”N‚RŒŽ‚R‚P“úiL“‡‘åŠwAp.338j
143) ¬—щpˆêA¼“cŒ«Ž¡A…’JŒÜ˜YA’ª“cŽ‘Ÿ SHG–@‚É‚æ‚鎇ŠOüÆŽË’†‚ÌTiO2(110)/H2OŠE–Ê“dŽqó‘Ô‚ÌŠÏ‘ª “ú–{•¨—Šw‰ï‘æ‚T‚S‰ñ”N‰ïA•½¬‚P‚P”N‚RŒŽ‚Q‚W“úiL“‡‘åŠwAp.307j
144) ‘å‹´O–¾A“c’†‰pŽ÷A²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ Œõ‘æ“ñ‚’²”g”¶(SHG)‚ÆXPS‚É‚æ‚éGe/Ge-Ž_‰»–ŒŠE–Ê‚ÌŒ¤‹† “ú–{•¨—Šw‰ï‘æ‚T‚S‰ñ”N‰ïA•½¬‚P‚P”N‚RŒŽ‚Q‚W“úiL“‡‘åŠwAp.305j
145) …’JŒÜ˜Y ”ñüŒ`ŒõŠw‚ð—p‚¢‚½•\–ÊEŠE–Ê‚ÌŠÏ‘ªiµ‘Òj ‘åã“d‹C’ÊM‘åŠw‘æ‚U‰ñƒVƒ“ƒ|ƒWƒEƒ€ uŒ´ŽqE•ªŽqƒŒƒxƒ‹‚̃Lƒƒƒ‰ƒNƒ^ƒŠƒ[[ƒVƒ‡ƒ“---ŒõAXü‚ð—p‚¢‚½”ñ”j‰ó“IŽè–@v •½¬‚P‚P”N‚RŒŽ‚S“úAi‘åã“d‹C’ÊM‘åŠwA}‘ŠÙ¬ƒz[ƒ‹Ap.23j
146) ‘å‹´O–¾A“c’†‰pŽ÷A²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ Œõ‘æ“ñ‚’²”g”¶(SHG)–@‚É‚æ‚éGe/Ge-oxideŠE–Ê‚Ì•]‰¿ ‘æ‚R‚X‰ñ^‹ó‚ÉŠÖ‚·‚é˜A‡u‰‰‰ïA•½¬‚P‚O”N‚P‚PŒŽ‚P‚Q“úi‘åã‰ÈŠw‹ZpƒZƒ“ƒ^[Ap235j
147) “c’†‰pŽ÷A˜e–{—T”VA‹{èr•FA…’JŒÜ˜YA’ª“cŽ‘Ÿ ƒKƒ‰ƒX-AuŠE–Ê‚ÌSHŒõ‹“x‚Ì—ã‹NŒõŽqƒGƒlƒ‹ƒM[ˆË‘¶« ‘æ‚R‚X‰ñ^‹ó‚ÉŠÖ‚·‚é˜A‡u‰‰‰ïA•½¬‚P‚O”N‚P‚PŒŽ‚P‚Q“úi‘åã‰ÈŠw‹ZpƒZƒ“ƒ^[Ap233j
148) {“c“ÄŽjA²–ì—z”VA”¨’†’mKA…’JŒÜ˜YA‘å’ËM—YA’ª“cŽ‘Ÿ MBE‚É‚æ‚é’ቷ¬’·GaAs‚̃‰ƒ}ƒ“ŽU—‚É‚æ‚é‰ðÍ ‘æ‚T‚X‰ñ‰ž—p•¨—Šw‰ïŠwpu‰‰‰ïA•½¬‚P‚O”N‚XŒŽ‚P‚U“úiL“‡‘åA—\eWNo.1,p.264j
149) ‹{‰ªGŽ¡A‹v¢‘׎mA²–ì—z”VAXG°A…’JŒÜ˜YA’ª“cŽ‘ŸA‘å’ËM—YAŽ›–ì–« ƒ‰ƒ}ƒ“•ªŒõ–@‚ÆXRD‚É‚æ‚éa-TiCl3‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï–k—¤Žx•”E‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”‡“¯u‰‰‰ïA•½¬‚P‚O”N‚P‚QŒŽ‚T“úi•xŽR‘åŠwAp.95j
150) “c’†‰pŽ÷A…’JŒÜ˜YA’ª“cŽ‘Ÿ GaAs(001)‚ÌSHG‚Ì—ã‹NŒõŽqƒGƒlƒ‹ƒM[ˆË‘¶« “ú–{•¨—Šw‰ï–k—¤Žx•”E‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”‡“¯u‰‰‰ïA•½¬‚P‚O”N‚P‚QŒŽ‚T“úi•xŽR‘åŠwAp.91j
151) ‘å‹´O–¾A“c’†‰pŽ÷A²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ Œõ‘æ“ñ‚’²”g”¶(SHG)–@‚É‚æ‚éGe/Ge-oxideŠE–Ê‚Ì•]‰¿ “ú–{•¨—Šw‰ï–k—¤Žx•”E‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”‡“¯u‰‰‰ïA•½¬‚P‚O”N‚P‚QŒŽ‚T“úi•xŽR‘åŠwAp.91j
152) ‰€“cNKA¼“cŒ«Ž¡A’†‘º‘•cA²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘ŸA•äâ‹IŽqAŠÖ’J—²•vAŒI“ci SHGŒ°”÷‹¾–@‚É‚æ‚éƒAƒiƒ^[ƒ[Œ^TiO2(101)’PŒ‹»¬’·–Ê‚ÌŠÏŽ@ “ú–{•¨—Šw‰ï–k—¤Žx•”E‰ž—p•¨—Šw‰ï–k—¤EM‰zŽx•”‡“¯u‰‰‰ïA•½¬‚P‚O”N‚P‚QŒŽ‚T“úi•xŽR‘åŠwAp.90j
153) “c’†‰pŽ÷A˜e–{—T”VA‹{èr•FA…’JŒÜ˜YA’ª“cŽ‘Ÿ ƒKƒ‰ƒX-AuŠE–Ê‚©‚ç‚ÌSHG‚Ì—ã‹NŒõŽqƒGƒlƒ‹ƒM[ˆË‘¶« “ú–{•¨—Šw‰ï1998”NH‚Ì•ª‰È‰ïA•½¬‚P‚O”N‚XŒŽ‚Q‚W“úi—®‹…‘åA‰«“ê‘Û‘åAp.413j
154) ¬—щpˆêA¼“cŒ«Ž¡A…’JŒÜ˜YA’ª“cŽ‘Ÿ SHG–@‚É‚æ‚鎇ŠOüÆŽË’†‚ÌrutileŒ^TiO2(110)•\–Ê‚ÌŒ¤‹† “ú–{•¨—Šw‰ï1998”NH‚Ì•ª‰È‰ïA•½¬‚P‚O”N‚XŒŽ‚Q‚W“úi—®‹…‘åA‰«“ê‘Û‘åAp.413j
155) ²–ì—z”VA”¨’†’mKA{“c“ÄŽjA…’JŒÜ˜YA‘å’ËM—YA’ª“cŽ‘Ÿ MBE’ቷ¬’·GaAs–Œ‚̃‰ƒ}ƒ“ŽU—‚É‚æ‚é‰ðÍ “ú–{•¨—Šw‰ï1998”NH‚Ì•ª‰È‰ïA•½¬‚P‚O”N‚XŒŽ‚Q‚W“úi—®‹…‘åA‰«“ê‘Û‘åAp.107j
156) Žá™‘וãA¬—щpˆêA¼“cŒ«Ž¡A…’JŒÜ˜YA’ª“cŽ‘ŸA•äâ‹IŽqAŠÖ’J—²•vAŒI“ci ƒAƒiƒ^[ƒ[Œ^TiO2’PŒ‹»¬’·–Ê‚ÌŒõ‘æ“ñ‚’²”g”¶ “ú–{•¨—Šw‰ï‘æ‚T‚R‰ñ”N‰ïA•½¬‚P‚O”N‚RŒŽ‚R‚O“úi“Œ–M‘åŠwA“ú–{‘åŠwp.294j
157) ¬—щpˆêAŽá™‘וãA…’JŒÜ˜YA’ª“cŽ‘Ÿ SH•ªŒõ–@‚É‚æ‚é‹ó‹C’†‚ÌrutileŒ^TiO2(001)•\–Ê“dŽqó‘Ô‚ÌŒ¤‹† “ú–{•¨—Šw‰ï‘æ‚T‚R‰ñ”N‰ïA•½¬‚P‚O”N‚RŒŽ‚R‚O“úi“Œ–M‘åŠwA“ú–{‘åŠwp.294j
158) “c’†‰pŽ÷A…’JŒÜ˜YA’ª“cŽ‘Ÿ SH•ªŒõ–@‚É‚æ‚éNaCl(100)™œŠJ–Êã‚ÌAu”––Œ‚ÌŒ¤‹† “ú–{•¨—Šw‰ï‘æ‚T‚R‰ñ”N‰ïA•½¬‚P‚O”N‚RŒŽ‚R‚O“úi“Œ–M‘åŠwA“ú–{‘åŠwp.294j
159) ’·’J•”ŒöˆêAàV“c¹lA‹{‰ªGŽ¡A²–ì—z”VAXG°A…’JŒÜ˜YA’ª“cŽ‘ŸA‘å’ËM—YAŽ›–ì–« “§‰ß“dŽqŒ°”÷‹¾‚¨‚æ‚у‰ƒ}ƒ“•ªŒõ–@‚ð—p‚¢‚½ƒ`[ƒOƒ‰[G”}‚̉ðÍ ‘æ‚S‚U‰ñ‚•ªŽqŠw‰ï‚•ªŽq“¢˜_‰ïA•½¬‚X”N‚P‚OŒŽi“Œ‹žAp.1221-2j
160) ‹{‰ªGŽ¡A’·’J•”ŒöˆêA‘ò“c¹lA²–ì—z”VAXG°A…’JŒÜ˜YA’ª“cŽ‘ŸA‘å’ËM—YAŽ›–ì–« Ziegler-NattaG”}‚ÌŠˆ«ó‘Ô‚ÌŒ¤‹†-TiCl3‚̃‰ƒ}ƒ“ƒXƒyƒNƒgƒ‹ “ú–{•¨—Šw‰ï1997”NH‚Ì•ª‰È‰ïA•½¬‚X”N‚P‚OŒŽ‚U“úi_ŒË‘åŠwp.346j
161) ’†ìŠ°•¶A²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ ‹à‘®‰ñÜŠiŽq•\–Ê‚ÌSHŒõ‹“x•ª•zŠÏŽ@ “ú–{•¨—Šw‰ï1997”NH‚Ì•ª‰È‰ïA•½¬‚X”N‚P‚OŒŽ‚W“úi_ŒË‘åŠwp.386j
162) ¬—щpˆêAŽá™‘וãA…’JŒÜ˜YA’ª“cŽ‘Ÿ TiO2(110)‚Ì•\–ÊSHŒõ‹“x‚ÌŒõŽqƒGƒlƒ‹ƒM[‹y‚Ñ•ÎŒõ”z’uˆË‘¶« “ú–{•¨—Šw‰ï1997”NH‚Ì•ª‰È‰ïA•½¬‚X”N‚P‚OŒŽ‚W“úi_ŒË‘åŠwp.385j
163) ’·’J•”ŒöˆêA‘ò“c¹lA‹{‰ªGŽ¡A²–ì—z”VAXG°A…’JŒÜ˜YA’ª“cŽ‘ŸA‘å’ËM—YAŽ›–ì–« ŽíX‚Ì•\–Ê•ªÍ–@‚ð—p‚¢‚½ƒ`[ƒOƒ‰[G”}’†‚̃`ƒ^ƒ“Ží‚Ì‘¶Ýó‘Ô
164) ‘O“cL¶A…’JŒÜ˜YA’ª“cŽ‘ŸA¼‰ªŽj“NA¼–{F•¶AŠâèG•v La1.85Sr0.15CuO4’PŒ‹»ŽŽ—¿‚©‚ç‚Ì‚r‚g‚f •½¬‚W”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚W”N‚P‚QŒŽ‚V“ú
165) ¬—щpˆêA…’JŒÜ˜YA’ª“cŽ‘Ÿ TiO2(001)‚Ì‚r‚gŒõ‹“x‚Ì“üŽËŠpˆË‘¶« •½¬‚W”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚W”N‚P‚QŒŽ‚V“ú
166) …’JŒÜ˜Y ”g’·‰Â•Ï‚r‚g‚f–@‚É‚æ‚锽‰ž’†‚Ì•\–Ê“dŽq€ˆÊ‚ÌŠÏŽ@ “Œ‹ž‘åŠw•¨«Œ¤‹†Š’ZŠúŒ¤‹†‰ïu•\–Ê‹ÇŠ•¨«vA•½¬‚W”N‚P‚PŒŽ‚Q‚W“ú
167) ¬—щpˆêA…’JŒÜ˜YA’ª“cŽ‘Ÿ TiO2(001)‚Ì•\–ÊSHG “ú–{•¨—Šw‰ï‚P‚X‚X‚U”NH‚Ì•ª‰È‰ïA•½¬‚W”N‚P‚OŒŽ‚R“úiŽRŒû‘åŠwp.603j
168) “c’†‰pŽ÷A‹{èr•FA…’JŒÜ˜YA’ª“cŽ‘Ÿ Au-ƒKƒ‰ƒXŠE–Ê‚ÌSHŒõ‹“x‚Ì“üŽËƒGƒlƒ‹ƒM[ˆË‘¶« “ú–{•¨—Šw‰ï‚P‚X‚X‚U”NH‚Ì•ª‰È‰ïA•½¬‚W”N‚P‚OŒŽ‚P“úiŽRŒû‘åŠwp.539j
169) •y‰i‰pˆêA—é–؈ê–îA…’JŒÜ˜YA’ª“cŽ‘Ÿ ’´“`“±‘ÌNb3Sn‚Ì‘½ŒõŽq—ã‹N”ŒõƒXƒyƒNƒgƒ‹ “ú–{•¨—Šw‰ï‘æ‚T‚P‰ñ”N‰ïA•½¬‚W”N‚RŒŽ‚R‚P“úi‹à‘ò‘åŠwj
170) ¬—щpˆêA…’JŒÜ˜YA’ª“cŽ‘Ÿ ’PŒ‹»TiO2(110),(001)‚ÌŒõ‘æ“ñ‚’²”g”¶‚Ì‹NŒ¹ “ú–{•¨—Šw‰ï‘æ‚T‚P‰ñ”N‰ïA•½¬‚W”N‚RŒŽ‚R‚P“úi‹à‘ò‘åŠwj
171) ŽRè~A²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ ƒOƒ‰ƒtƒ@ƒCƒg‚ÌSHŒõŠÏ‘ª‚Æ“ñŽŸ‚Ì”ñüŒ`Š´Žó—¦‚ÌŒˆ’è “ú–{•¨—Šw‰ï‘æ‚T‚P‰ñ”N‰ïA•½¬‚W”N‚RŒŽ‚R‚P“úi‹à‘ò‘åŠwj
172) “c’†‰pŽ÷A¬—щpˆêA•ì_KA²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ ‹à‘®‘½‘w–ŒŒn‚Ì‚r‚g‚f‘‹Œø‰Ê‚Ì‹NŒ¹ “ú–{•¨—Šw‰ï‘æ‚T‚P‰ñ”N‰ïA•½¬‚W”N‚RŒŽ‚R‚P“úi‹à‘ò‘åŠwj
173) •y‰i‰pˆêA—é–؈ê–îA…’JŒÜ˜YA’ª“cŽ‘Ÿ ’´“`“±‘ÌNb3Sn‚Ì‘½ŒõŽq—ã‹N”ŒõŒ»Û •½¬‚V”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚V”N‚P‚QŒŽ‚Q“ú
174) “c’†‰pŽ÷A¬—щpˆêA•ì_KA²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ ‚r‚g‚fŒ°”÷‹¾‚ÅŠÏŽ@‚µ‚½‹à‘®‘½‘w–Œƒpƒ^[ƒ“‚Ì–¾ˆÃ‚Ì‹NŒ¹ •½¬‚V”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚V”N‚P‚QŒŽ‚Q“ú
175) ŽRè~A²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ ƒOƒ‰ƒtƒ@ƒCƒg‚ÌŒõ‘æ“ñ‚’²”g”¶ •½¬‚V”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚V”N‚P‚QŒŽ‚Q“ú
176) ¬—щpˆêA…’JŒÜ˜YA’ª“cŽ‘Ÿ ’PŒ‹»TiO2‚ÌŒõ‘æ“ñ‚’²”g”¶ •½¬‚V”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚V”N‚P‚QŒŽ‚Q“ú
177) “c’†‰pŽ÷A¬—щpˆêA•ì_KA…’JŒÜ˜YA’ª“cŽ‘Ÿ Œõ‘æ“ñ‚’²”g”¶–@i‚r‚g‚fj‚É‚æ‚é‹à‘®‘½‘w–Œƒpƒ^[ƒ“‚Ì‘œŠÏŽ@ “ú–{•¨—Šw‰ï‚P‚X‚X‚T”NH‚Ì•ª‰È‰ïA•½¬‚V”N‚XŒŽ‚Q‚V“úi‘åã•{—§‘åŠwp.506j
178) ’|—ÑŠî¬A…’JŒÜ˜YA’ª“cŽ‘Ÿ •\–Ê”½ŽË‚r‚g‚f–@‚É‚æ‚éGaAsŒ‹»‚Ì–Ê•ûˆÊ‚ÌŒˆ’è ‘æ‚S‚Q‰ñ‰ž—p•¨—Šw‰ïA•½¬‚V”N‚RŒŽ‚Q‚W“úi“ŒŠC‘åÓìZŽÉp.1237j
179) •ì_KA“c’†‰pŽ÷A…’JŒÜ˜YA’ª“cŽ‘Ÿ ‘–¸Œ^‚r‚g‚fŒ°”÷‹¾‚É‚æ‚é–„‚à‚ꂽ‹à‘®‘w‚ÌŠÏŽ@ ‘æ‚S‚Q‰ñ‰ž—p•¨—Šw‰ïA•½¬‚V”N‚RŒŽ‚Q‚X“úi“ŒŠC‘åÓìZŽÉp.462j
180) L£”ŽÍA…’JŒÜ˜YA’ª“cŽ‘ŸAŽRè“T@AŽO‘•v ŒõÆŽË‚É‚æ‚é’Y‘fŽ¿ƒƒ\ƒtƒF[ƒY‹…»‚̃‰ƒ}ƒ“ƒXƒyƒNƒgƒ‹•Ï‰» “ú–{•¨—Šw‰ï‘æ‚T‚O‰ñ”N‰ïA•½¬‚V”N‚RŒŽ‚R‚P“úi_“Þì‘åŠwp.324j
181) “c’†‰pŽ÷A…’JŒÜ˜YA’ª“cŽ‘Ÿ ‹à‘®-ƒKƒ‰ƒXŠE–Ê‚Ì“ñŽŸ‚Ì”ñüŒ`ŒõŠwŠ´Žó—¦¬•ª”ä “ú–{•¨—Šw‰ï‘æ‚T‚O‰ñ”N‰ïA•½¬‚V”N‚RŒŽ‚Q‚X“úi_“Þì‘åŠwp.537j
182) —é–؈ê–îA…’JŒÜ˜YA’ª“cŽ‘Ÿ ’´“`“±‘ÌNb3Sn‚Ì•\–Ê‚r‚g‚f “ú–{•¨—Šw‰ï‘æ‚T‚O‰ñ”N‰ïA•½¬‚V”N‚RŒŽ‚R‚P“úi_“Þì‘åŠwp.559j
183) …’JŒÜ˜Y •\–ʃ‰ƒ}ƒ“•ªŒõ‚Æ•\–Ê‚r‚g‚f•ªŒõiµ‘Òj —Œ¤ƒVƒ“ƒ|ƒWƒEƒ€uƒŒ[ƒU[‚Æ•\–ÊvA•½¬‚U”N‚P‚QŒŽ‚P‚U“úi—‰»ŠwŒ¤‹†Šj
184) “c’†‰pŽ÷A…’JŒÜ˜YA’ª“cŽ‘Ÿ ‹â-ƒKƒ‰ƒXŠE–Ê‚Ì“ñŽŸ‚ÌŒõŠw”ñüŒ`Š´Žó—¦¬•ª”ä‚Ì‘ª’è •½¬‚U”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚U”N‚P‚PŒŽ‚Q‚U“úi‹à‘ò‘åŠwp.160j
185) L£”ŽÍA…’JŒÜ˜YA’ª“cŽ‘ŸAŽRè“T@AŽO‘•v ŒõÆŽË‚µ‚½’P‘fŽ¿ƒƒ\ƒtƒF[ƒY‹…»‚̃‰ƒ}ƒ“ŽU— •½¬‚U”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚U”N‚P‚PŒŽ‚Q‚U“úi‹à‘ò‘åŠwp.159j
186) ’|—ÑŠî¬A…’JŒÜ˜YA’ª“cŽ‘Ÿ ‚r‚g‚f‚É‚æ‚éGaAsŒ‹»‚Ì–Ê•ûˆÊ‚Ì‘ª’è •½¬‚U”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚U”N‚P‚PŒŽ‚Q‚U“úi‹à‘ò‘åŠwp.157j
187) ‰€“cNKAŽR“à•ŽuA…’JŒÜ˜YA²–ì—z”VAâˆäõA¬ŽR‘×A’ª“cŽ‘Ÿ Cs,O2/p-GaAs‹¤‹z’…Œn‚É‚¨‚¯‚é•\–ÊSHG‚ÆŒõ“dŽq•úo‚Ì‘ŠŠÖ “ú–{•¨—Šw‰ï1994”NH‚Ì•ª‰È‰ïA•½¬‚U”N‚XŒŽ‚Q“úiɪ‘åŠwp.356j
188) …’JŒÜ˜YA‰€“cNKA’ª“cŽ‘ŸA‘O“cF_AŽº“c~ˆê Si1-xGexŒ‹»‚ÌŒõ‘æ“ñ‚’²”g”¶ “ú–{•¨—Šw‰ï‘æ‚S‚X‰ñ”N‰ïA•½¬‚U”N‚RŒŽ‚Q‚W“úi•Ÿ‰ªH‹Æ‘åŠwp.114j
189) …’JŒÜ˜YA‰€“cNKA’ª“cŽ‘ŸA‘O“cF_AŽº“c~ˆê 4oŒX‚¢‚½Si0.315Ge0.635(001)Œ‹»•\–Ê‚ÌSHŒõ‹“x‚Ì•ûˆÊŠpˆË‘¶« •½¬‚T”N“x“ú–{•¨—Šw‰ï‰ž—p•¨—Šw‰ï–k—¤Žx•”‡“¯u‰‰‰ïA•½¬‚T”N‚P‚QŒŽ‚S“úi•Ÿˆä‘åŠwp.167j
190) ŽR“à•ŽuA…’JŒÜ˜YA’ª“cŽ‘Ÿ InP(110)–Ê‚Ì•\–Ê‚r‚g‹“x“üŽËŠpˆË‘¶« “ú–{•¨—Šw‰ï1993”NH‚Ì•ª‰È‰ïA•½¬‚T”N‚P‚OŒŽ‚P‚T“úi‰ªŽR‘åŠwp.563j |
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1)
‹{“à—ÇLAA. B. El Basaty, …’JŒÜ˜YA¼“‡•q‘¥A‘º“c‰pK Œõ‘æ“ñ‚’²”g”¶–@‚É‚æ‚é—U‹N‚d‚k‘fŽqŠE–Ê‚ÌŠÏ‘ª •\–ÊEŠE–ʃXƒyƒNƒgƒƒXƒRƒs[‚Q‚O‚O‚X •½¬‚Q‚P”N‚P‚QŒŽ‚S“úiŽD–yj
2) ²–ì —z”VA…’JŒÜ˜YAW. Wolf, R. Podloucky, ‹{‰ªGŽ¡A”ÑX‘ñŽkA‰Í‘º‹Iˆê,¬X•¶•v Cu(001)•\–Ê‚ÌSH‰ž“š‚Ì‘æˆêŒ´—ŒvŽZ‚É‚æ‚é‰ðÍ •\–ÊEŠE–ʃXƒyƒNƒgƒƒXƒRƒs[‚Q‚O‚O‚V •½¬‚P‚X”N‚P‚QŒŽ‚P‚T“úiH•Û‰·òj
3) ‹{“à—ÇLA²–ì—z”VAŽR‰ºŒ[A‰ª“cƒˆêA…’JŒÜ˜Y ÔŠOƒpƒ‹ƒXÆŽË‚µ‚½H-Si(111)–Ê‚Ì“ñŽŸ”ñüŒ`ŒõŠwŒ°”÷‹¾ŠÏŽ@ •\–ÊEŠE–ʃXƒyƒNƒgƒƒXƒRƒs[‚Q‚O‚O‚V •½¬‚P‚X”N‚P‚QŒŽ‚P‚T“úiH•Û‰·òj
4) ‘O“c—mŽŸ˜YA‹{•”ÉA“¡ˆäŒ[ŽjA²’|Ë•FAŠâˆä“N–çA…’JŒÜ˜Y Au‚Žw”•\–Ê‚É‚¨‚¯‚éSHŒõ‹“xƒpƒ^[ƒ“‚Ì—ã‹NŒõ”g’·ˆË‘¶« ‘æ‚Q‚T‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[/‘æ‚V‰ñ•\–ʃGƒŒƒNƒgƒƒjƒNƒXŒ¤‹†‰ï •½¬‚P‚W”N‚P‚QŒŽ‚X“úiƒ‰ƒtƒH[ƒŒ”ú”iŒÎj
5) ²–ì—z”VA‹g“cŽ¡•FA‘噑¾‰ÀŽiA‘ºã“N—YA‚ìªGA…’JŒÜ˜YA‘å’J‹œA —RˆäL•F ƒ|ƒŠƒ}[‹z’…•\–Ê‚Ì…˜a\‘¢‚ÌŒõ˜aŽü”g”¶(SFG)•ªŒõ ‘æ‚Q‚T‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[/‘æ‚V‰ñ•\–ʃGƒŒƒNƒgƒƒjƒNƒXŒ¤‹†‰ï •½¬‚P‚W”N‚P‚QŒŽ‚X“úiƒ‰ƒtƒH[ƒŒ”ú”iŒÎj
6) —щĶAŠâˆä“N–çAàS‰–—¢Ž}ŽqAr•KˆêA›Œ´ºA²–ì—z”VA…’JŒÜ˜Y PtƒiƒmƒƒCƒ„‚ÌŒõ‘æ“ñ‚’²”g•ªŒõ ‘æ‚Q‚S‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚V”N‚P‚QŒŽ‚X“úi•ÐŽR’É·òj
7) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y UVƒpƒ‹ƒXŒõÆŽË‚É‚æ‚éH-Si(111)•\–Ê‚©‚ç‚Ì…‘f’E—£‚ÌSHŒ°”÷‘œŠÏŽ@ ‘æ‚Q‚S‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚V”N‚P‚QŒŽ‚X“úi•ÐŽR’É·òj
8) …’JŒÜ˜YAŠâˆä“N–ç Ä\¬‚µ‚½Au(100)‚¨‚æ‚ÑAu(111)–Ê‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶ ‘æ‚Q‚S‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚V”N‚P‚QŒŽ‚X“úi•ÐŽR’É·òj
9) “n•Ó—º•ãA”ª”¦‰À¬ASoe Myint MaungA…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA ¼–{—SŽiAŽR–{—YˆêAŒïÀGb Ž¥‰»—U‹NSHG–@‚ð—p‚¢‚½Co“Y‰Áƒ‹ƒ`ƒ‹Œ^TiO2‚Ì•\–ÊŽ¥«‚ÌŒ¤‹† ‘æ‚Q‚S‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚V”N‚P‚QŒŽ‚X“úi•ÐŽR’É·òj
10) •\”ü‹IA—«”•½AŽ›–ì–«A…’JŒÜ˜Y ƒ]ƒ‹ƒQƒ‹–@‚Å쬂µ‚½SiO2/TiO2(110)‚Ì“dŽqó‘Ô ‘æ‚Q‚S‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚V”N‚P‚QŒŽ‚X“úi•ÐŽR’É·òj
11) …’JŒÜ˜YA‹{“à—ÇLA²–ì—z”Viµ‘Òu‰‰j SH‚¨‚æ‚ÑSFŒ°”÷‹¾–@‚É‚æ‚éŒÅ‘Ì•\–Ê‚¨‚æ‚Ѷ‘ÌŠE–Ê‚ÌŠÏŽ@ ‘æ‚Q‚R‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚U”N‚P‚QŒŽ‚R“úiƒ‰ƒtƒH[ƒŒ“ì‹I”’•lj
12) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y H-Si(111)–Ê‚©‚ç‚ÌUVÆŽË‚É‚æ‚é…‘f’E—£‚ÌSHŒ°”÷‘œŠÏŽ@ ‘æ‚Q‚R‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚U”N‚P‚QŒŽ‚R“úiƒ‰ƒtƒH[ƒŒ“ì‹I”’•lj
13) ²–ì—z”VA…’JŒÜ˜YAW. Wolf, R. Podloucky ƒ‹ƒ`ƒ‹Œ^TiO2(110)•\–Ê‚Ì”ñüŒ`ŒõŠw‰ž“š‚Ì‘æˆêŒ´—ŒvŽZ‚É‚æ‚é—˜_‰ðÍ “Œ‹ž‘åŠw•¨«Œ¤‹†Š’ZŠúŒ¤‹†‰ïu•\–Ê•ªŒõ‚ÌÅ‘Oü‚ƃiƒmƒTƒCƒGƒ“ƒX‚Ö‚Ì“WŠJv i‘æ‚Q‚Q‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[j •½¬‚P‚T”N‚P‚QŒŽ‚S“úi“Œ‘啨«Œ¤”Žsj
14) …’JŒÜ˜YA–kŒ´•A›Œ´ºA²–ì—z”V NaCl(110)ƒtƒ@ƒZƒbƒg–Êã‚ÌAuƒiƒmƒƒCƒ„‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶ ‘æ‚Q‚P‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚S”N‚P‚QŒŽ‚V“úiH•ÛƒŠƒ][ƒgƒzƒeƒ‹ƒNƒŒƒZƒ“ƒgj
15) ²–ì—z”VA…’JŒÜ˜YAW. Wolf, R. Podloucky Si(111)•\–Ê‚ÌüŒ`‹y‚Ñ”ñüŒ`ŒõŠw‰ž“šŒvŽZ ‘æ‚Q‚O‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚R”N‚P‚PŒŽ‚X“úi”MìƒnƒCƒcj
16) ²–ì—z”VA‹{‰ªGŽ¡AXG°A…’JŒÜ˜YA‘å’ËM—YAŽ›–ì–« Ziegler-Natta”––Œƒ‚ƒfƒ‹G”}‚Ìì¬-MgCl2”––Œ‚̃‰ƒ}ƒ“ŠÏ‘ª- ‘æ‚P‚X‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚Q”N‚P‚QŒŽ‚P‚O“úiÎìƒnƒCƒeƒNƒZƒ“ƒ^[j
17) ²–ì—z”VA‹{‰ªGŽ¡A‹v¢‘׎mAXG°A…’JŒÜ˜YA’ª“cŽ‘ŸA‘å’ËM—YAŽ›–ì–« ƒ‰ƒ}ƒ“•ªŒõ–@‚ÆXü‰ñÜ‚É‚æ‚éZiegler-NattaG”}‚ÌŠÏŽ@ ‘æ‚P‚W‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚P‚P”N‚P‚QŒŽ‚P‚W“úiƒ}ƒŠƒ“ƒqƒ‹¬’Mj
18) “c’†‰pŽ÷A…’JŒÜ˜YA’ª“cŽ‘Ÿ ƒKƒ‰ƒX-AuŠE–Ê‚Ì‚r‚g‚fƒXƒyƒNƒgƒ‹ ‘æ‚P‚U‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚W”N‚P‚QŒŽ‚V“úCié‹ÊŒ§A‘—§•wl‹³ˆç‰ïŠÙj
19) ¬—щpˆêA…’JŒÜ˜YA’ª“cŽ‘Ÿ ’PŒ‹»TiO2(110),(001)‚ÌŒõ‘æ“ñ‚’²”g”¶‚Ì•ûˆÊŠpˆË‘¶« ‘æ‚P5‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚W”N‚PŒŽ‚P‚Q“úCi”MìƒnƒCƒcj
20) L£”ŽÍA…’JŒÜ˜YA’ª“cŽ‘ŸAŽRè“T@AŽO‘•v ƒŒ[ƒU[ÆŽË‚É‚æ‚é’Y‘fŽ¿ƒƒ\ƒtƒF[ƒX‹…»•ªŽq‚̉ˋ´Œ‹‡ŠJ—ô ‘æ‚P‚S‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚U”N‚P‚PŒŽ‚Q‚T“úCiÎ쌧A–k—¤æ’[‘åj
21) …’JŒÜ˜YA‰€“cNKA’ª“cŽ‘ŸA‘O“cF_AŽº“c~ˆê 4oŒX‚¢‚½Si0.315Ge0.635(001)Œ‹»•\–Ê‚ÌSHŒõ‹“xƒpƒ^[ƒ“ ‘æ‚P‚R‰ñ‹z’…•ªŽq‚Ì•ªŒõŠw“IŒ¤‹†ƒZƒ~ƒi[ •½¬‚T”N‚P‚QŒŽ‚P‚T“úCiå‘äŠâÀCƒOƒŠ[ƒ“ƒsƒAŠâÀj |
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9) ŠÞ “N‰›A Nguyen Tuan AnhA‚£Ê•äA…’JŒÜ˜YA²–ì—z”VA“Œ—äFˆê MgOŠî”Âã‚Ì”’‹àƒiƒmƒƒCƒ„[‚ÌŒõ‘æ“ñ‚’²”g”¶ ‘æ‚P‚W‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚X”N‚P‚QŒŽ‚P‚S“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[Aƒ|ƒXƒ^[j
10) “nç²—º•ãA“’ó^—iA“c経õ‹KA”ª”¦‰À¬A…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA ¼–{—SŽiA ŽR–{—Yˆê AŒïÀGb Co‚ð“Y‰Á‚µ‚½ƒ‹ƒ`ƒ‹Œ^TiO2(110)•\–ÊŽ¥‰»‚Ì‹NŒ¹ ‘æ‚P‚W‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚X”N‚P‚QŒŽ‚P‚T“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[Aƒ|ƒXƒ^[j
11) ‰ª“cƒˆêAŽR‰º Œ[A‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y …‘fI’[Si(111)–Ê‚ÌŒõÆŽË‚É‚æ‚é…‘f’E—£‚ÌŒõ˜aŽü”gAŒõ‘æ“ñ‚’²”gŒ°”÷‘œ‚Ì“¯ŽžŠÏŽ@ ‘æ‚P‚W‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚X”N‚P‚QŒŽ‚P‚T“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[Aƒ|ƒXƒ^[j
12) ‹{è‘å•ãA‘O“c—mŽŸ˜YA‹{• ”ÉA“¡ˆäŒ[ŽjA²’|Ë•FAŠâˆä“N–çA…’JŒÜ˜Y Œõ‘æ“ñ‚’²”g”¶‚É‚æ‚é‹à‚Žw”–Ê‚Ì•\–Ê“dŽqó‘Ô‚ÌŒ¤‹† ‘æ‚P‚W‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚X”N‚P‚QŒŽ‚P‚T“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[Aƒ|ƒXƒ^[j 13) ‹{•”ÉA‘O“c—mŽŸ˜YA“¡ˆäŒ[ŽjA²’|Ë•FAŠâˆä“N–çA…’JŒÜ˜Y Œõ‘æ“ñ‚’²”g”¶–@‚É‚æ‚éAu‚Žw”–Ê‚ÌŒ¤‹† ‘æ‚P‚V‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚W”N‚P‚QŒŽ‚W“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.257j
14) ŽR‰ºŒ[A‹{“à—ÇLA‰ª“cƒˆêA²–ì—z”VA…’JŒÜ˜Y …‘fI’[Si(111)–Ê‚ÌŒõÆŽË‚É‚æ‚é…‘f’E—£‚ÌŒõ‘æ“ñ‚’²”gAŒõ˜aŽü”gŒ°”÷‘œŠÏŽ@ ‘æ‚P‚V‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚W”N‚P‚QŒŽ‚W“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.261j
15) “nç²—º•ãA“’ó^—iA”ª”¦‰À¬A…’JŒÜ˜YA—é–Ø—²‘¥A£ì—EŽO˜YA¼–{—SŽiA ŽR–{—YˆêAŒïÀGb Co‚ð“Y‰Á‚µ‚½ƒ‹ƒ`ƒ‹Œ^TiO2‚©‚ç‚ÌŽ¥‰»—U‹NŒõ‘æ“ñ‚’²”g”¶ ‘æ‚P‚V‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚W”N‚P‚QŒŽ‚W“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.305j
16) Kitsakorn Locharoenrat, Haruyuki Sano, and Goro Mizutani Finite-Difference Time-Domain Modeling of Absorption Spectra for Copper Nanowires ‘æ‚P‚V‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚W”N‚P‚QŒŽ‚W“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.313j
17) •\”ü‹IA—é–ØDŒbA–k‰ªG˜aA…’JŒÜ˜Y ƒ‹ƒ`ƒ‹Œ^TiO2(110)‚ÆTiO2(001)‚©‚ç‚ÌSHŒõ‚Ì“¯Žž‰ðÍ ‘æ‚P‚U‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚V”N‚P‚QŒŽ‚X“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.43j
18) “n•Ó—º•ãA•\”ü‹IA…’JŒÜ˜Y Œõ‘æ“ñ‚’²”g”¶–@‚É‚æ‚郋ƒ`ƒ‹Œ^TiO2(001)ƒoƒ‹ƒN‚Ì”ñüŒ`Š´Žó—¦‚Ì”g’·ˆË‘¶ ‚ÌŒ¤‹† ‘æ‚P‚U‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚V”N‚P‚QŒŽ‚X“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.59j
19) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y …‘fI’[Si(111)–Ê‚©‚ç‚ÌUVƒpƒ‹ƒXŒõÆŽË‚É‚æ‚é…‘f’E—£‚Ì‘æ“ñ‚’²”gŒ°”÷‘œŠÏŽ@ ‘æ‚P‚U‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚V”N‚P‚QŒŽ‚X“úAi‘åãŽs—§‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.63j
20) ²–ì—z”VA…’JŒÜ˜YAW. Wolf, and R. Podloucky ƒ‹ƒ`ƒ‹Œ^TiO2(110)•\–Ê‚ÌSH‰ž“š‚Ì‘æˆêŒ´—ŒvŽZ ‘æ‚P‚S‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚T”N‚P‚QŒŽ‚U“úAi‘åãŽs‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.195j
21) Šâˆä“N–çA…’JŒÜ˜Y Au(100)5~20Ä\¬\‘¢‚ÌSH•ªŒõƒXƒyƒNƒgƒ‹ ‘æ‚P‚S‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚T”N‚P‚QŒŽ‚U“úAi‘åãŽs‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.379j
22) ‹{“à—ÇLA²–ì—z”VA…’JŒÜ˜Y Œõ‘æ“ñ‚’²”gŒ°”÷‹¾‚É‚æ‚é…‘’†‚Ì“b•²—±Žq‚ÌŠÏŽ@ ‘æ‚P‚S‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚T”N‚P‚QŒŽ‚U“úAi‘åãŽs‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶W p.383j
23) ŒË“ˆ’m•äA…’JŒÜ˜YA–p‹œ’BA—RˆäL•F ƒÁ-globulin^ƒ‹ƒ`ƒ‹Œ^TO2(110)‹z’…ŠE–Ê‚ÌŒõ‘æ“ñ‚’²”g”¶ ‘æ‚P‚Q‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚R”N‚P‚QŒŽ‚V“úAi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[A˜_•¶Wp.18j
24) ‹T’J”¹A΋´’¼‘åA’†‘º‘•cA…’JŒÜ˜YAŠÖ’J—²•vAŒI“ci •\–ÊSH•ªŒõ–@‚É‚æ‚éƒAƒiƒ^[ƒ[Œ^TiO2(101)–Ê‚¨‚æ‚Ñ(001)–Ê‚ÌŒ¤‹† ‘æ‚P‚Q‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚R”N‚P‚QŒŽ‚V“úAi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[A˜_•¶Wp.22j
25) •\”ü‹IA…’JŒÜ˜Y SiO2/TiO2(110)‚Ì”ñüŒ`ŒõŠwŒø‰Ê ‘æ‚P‚Q‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚R”N‚P‚QŒŽ‚V“úAi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[A˜_•¶Wp.218j
26) ²–ì—z”VAŽRŠÝº”VAŒI“c~ˆêA…’JŒÜ˜YA£ŒËŒå Cd1-xZnxTe‚ÌSHƒXƒyƒNƒgƒƒXƒRƒs[ ‘æ‚P‚Q‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚R”N‚P‚QŒŽ‚V“úAi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[A˜_•¶Wp.222j
27) –kŒ´•A“c’†‰pŽ÷A¼‰ª‹BlA…’JŒÜ˜Y NaCl(100)™œŠJ–Êã‚ɬ’·‚µ‚½Au”––Œ‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶‹¤– ‘æ‚P‚Q‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚R”N‚P‚QŒŽ‚V“úAi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[A˜_•¶Wp.226j
28) ‘å‹´O–¾A²–ì—z”VA…’JŒÜ˜Y SH•ªŒõ–@‚É‚æ‚éGeŠE–Ê€ˆÊ‚ÌŒŸo ‘æ‚P‚P‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚Q”N‚P‚QŒŽ‚Q“úAi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[A˜_•¶Wp.365j
29) ‘º”ö”ü‹IA¬—щpˆêA…’JŒÜ˜Y SiO2‚ªÍo‚µ‚½ƒ‹ƒ`ƒ‹Œ^TiO2(110)‚ÌŒõ‘æ“ñ‚’²”g”¶ ‘æ‚P‚P‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚Q”N‚P‚QŒŽ‚P“úAi‘åã‘åŠwƒRƒ“ƒxƒ“ƒVƒ‡ƒ“ƒZƒ“ƒ^[A˜_•¶Wp.41j
30) ‘å‹´O–¾A“c’†‰pŽ÷A²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ SH•ªŒõ–@‚É‚æ‚éGe(111)/GeŽ_‰»–ŒŠE–Ê‚ÌŒ¤‹† ‘æ‚P‚O‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚P”N‚P‚PŒŽ‚Q‚V“úAi‘åãŽs—§‘åŠwŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶Wp.281j
31) ‰€“cNKA²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ SH•ªŒõ–@‚É‚æ‚éGe(111)/GeŽ_‰»–ŒŠE–Ê‚ÌŒ¤‹† ‘æ‚P‚O‰ñŒõ•¨«Œ¤‹†‰ï •½¬‚P‚P”N‚P‚PŒŽ‚Q‚V“úAi‘åãŽs—§‘åŠwŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶Wp.277j
32) H. Tanaka, G. Mizutani, and S. Ushioda Excitation energy profile of the SH intensity from GaAs(001) Œõ•¨«Œ¤‹†‰ïf‚X‚W •½¬‚P‚O”N‚P‚PŒŽ‚Q‚V“úAi‘åãŽs—§‘åŠwŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶Wp.223j
33) ’†ìŠ°•¶A²–ì—z”VA…’JŒÜ˜YA’ª“cŽ‘Ÿ SHGŒ°”÷‹¾‚É‚æ‚é‹à‘®‰ñÜŠiŽq•\–Ê‚ÌSHŒõ‹“x‚QŽŸŒ³•ª•zŠÏŽ@ Œõ•¨«Œ¤‹†‰ïf‚X‚V •½¬‚X”N‚P‚PŒŽ‚Q‚X“úCi‘åãŽs‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶Wp.349j
34) ¬—щpˆêAŽá™‘וãA…’JŒÜ˜YA’ª“cŽ‘Ÿ SH•ªŒõ–@‚É‚æ‚érutileŒ^TiO2(110)•\–Ê“dŽqó‘Ô‚ÌŠÏ‘ª Œõ•¨«Œ¤‹†‰ïf‚X‚V •½¬‚X”N‚P‚PŒŽ‚Q‚W“úCi‘åãŽs‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶Wp.309j
35) Žá™‘וãA¬—щpˆêA…’JŒÜ˜YA’ª“cŽ‘ŸA•äâ‹IŽqAŠÖ’J—²•vAŒI“ci ƒAƒiƒ^[ƒ[Œ^TiO2’PŒ‹»¬’·–Ê‚ÌŒõ‘æ‚Q‚’²”g”¶ Œõ•¨«Œ¤‹†‰ïf‚X‚V •½¬‚X”N‚P‚PŒŽ‚Q‚W“úCi‘åãŽs‘åŠwpî•ñ‘‡ƒZƒ“ƒ^[A˜_•¶Wp.173j |
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17-1) Muhammad Samir Ullah, Siti Zulaikha Ngah Demon, Kazuki Matsumoto, Yoshihiro Miyauchi, Khuat Thi Thu Hien, Goro Mizutani, and Harvey Rutt Measurement of the Absolute Phase at the Interface of Organic Semiconductor by Second Harmonic Interference Technique IISc-JAIST Joint Workshop on Functional Inorganic and Organic Materials JAIST Ishikawa, Japan, March 7, 2016
17-2) Md. Abdus Sattar, Khuat Thi Thu Hien, Yoshihiro Miyauchi, Goro Mizutani, and Harvey N. Rutt Desorption kinetics and activation energy of hydrogen from the Si(111) 1x1: H surfaces studied by Sum frequency generation and Second harmonic generation IISc-JAIST Joint Workshop on Functional Inorganic and Organic Materials JAIST Ishikawa, Japan, March 7, 2016
17-3) Ngo Khoa Quang, Yoshihiro Miyauchi, Goro Mizutani, Martin D. Charlton, Ruiqi Chen, Stuart Boden, and Harvey Rutt Systematic Dependence of the Optical Second Harmonic Generation Intensity on the Designed Parameters of Cr Nanoholes The 9th International Conference on Photonics and Applications Ninh Binh City, Vietnam, Nov. 9, 2016
17-4) iMD Ehasanul Haque, Daiki Kobayashi, yuki tomatsu, Khuat Thi Thu Hien, Goro Mizutani, and Harvey N. Rutt Investigation of the Au/TiO2(320) Interface by Optical Second Harmonic Generation Technique 2016 MRS Fall Meeting and Exhibit Boston, Massachusetts, USA, Nov. 29, 2016
1) Hiroaki Takahashi, Yoshihiro Miyauchi, Norman Tolk, and Goro Mizutani Charge Accumulation at Step Bunches on TiO2 Vicinal Surfaces after UV Pulse Excitation Studied by Second Harmonic Generation 14th Annual Southeast Ultrafast Conference (SEUFC) 2011 Oak Ridge, TN, USA, January 13, 2011
2) Khuat Thi Thu Hien, M. Kikuchi, Y. Miyauchi and G. Mizutani Hydrogen Desorption from a Flat Si(111)1~1 Surface Studied by Sum Frequency Microscopy 8th International Symposium on Atomic Level Characterizations for New Materials and Devices '11 Seoul, Korea, May 26, 2011
3) Hoang Chi Hieu, N.A. Tuan, H. Li, Y. Miyauchi and G. Mizutani Molecular Orientation in Cellulose Fibers: Sum Frequency Confocal Microscope Study 8th International Symposium on Atomic Level Characterizations for New Materials and Devices '11 Seoul, Korea, May 26, 2011
4) M. Ono, T. Yamamoto, K. Uemura, H. H. Chi, and G. Mizutani Optical Second Harmonic Spectroscopy of the H2O Adsorbed Au(887) 8th International Symposium on Atomic Level Characterizations for New Materials and Devices '11 Seoul, Korea, May 26, 2011
5) Y. Miyauchi, A. B. El Basaty, S. Hirasa, H. Nakayama, H. Sano, and G. Mizutani Optical Sum Frequency Generation of an Alkyl Silane Monolayer on a Quartz Surface with Several Chain Lengths and Precursors 8th International Symposium on Atomic Level Characterizations for New Materials and Devices '11 Seoul, Korea, May 26, 2011
6) Y. Ogata, N. A. Tuan, and G. Mizutani Analysis of Optical Second Harmonic Generation from Pt Nanowires with Boomerang-shaped Cross-sections 8th International Symposium on Atomic Level Characterizations for New Materials and Devices '11 Seoul, Korea, May 26, 2011
7) Yoichi Ogata, Yuuki Iwase, Yoshihiro Miyauchi, and Goro Mizutani Optical Second Harmonic Generation from the Array of 2 nm-Width Pt Nanowires on theMgO(210) Faceted Template 11th Annual IEEE NANO Conference Portland, Oregon, USA, August 18, 2011
8) Goro Mizutani and Yoichi Ogata Optical Second Harmonic Generation from Cross-Section Controlled Pt nanowires on MgO(110) Faceted Templates (invited) The 29th International Conference on Solid State Science and Materials Physics & Workshop on Photonic Crystals and Graphene Sharm El-Shiekh , Egypt, 03 October, 2011
9) Goro Mizutani and Yoshihiro Miyauchi Ultrahigh-Vacuum Optical Sum Frequency Microscopy for Studying Hydrogen Desorption from Si(111) (invited) The 29th International Conference on Solid State Science and Materials Physics & Workshop on Photonic Crystals and Graphene Sharm El-Shiekh , Egypt, 04 October, 2011
10) A. B. EL Basaty, Y. Miyauchi, H. Nakayama, H. Sano, and G. Mizutani Influence of precursors of alkyl self assembled monolayers on the alkyl chain structure studied by sum frequency generation The 29th International Conference on Solid State Science and Materials Physics & Workshop on Photonic Crystals and Graphene Sharm El-Shiekh , Egypt, 05 October, 2011 (Poster)
11) Y. Ogata, Y. Iwase, and G. Mizutani Azimuthal angle dependence of the optical second harmonic intensity from Pt nanowires with width of as small as 2nm on the MgO(210) faceted substrate 11th International Conference on Atomically Controlled Surfaces, Interfaces and Nanostructures (ACSIN 2011) St. Petersburg, Russia, Oct. 4, 2011(Poster)
12) P. Mohan, D. Mott, Y. Enomoto, Y. Matsumura, H. Takahashi, G. Mizutani, and S. Maenosono Au Nanoparticle Loaded Boehmite Nanorods for Novel Plasmonic Gas Sensors 63rd Divisional Meeting on Interface Chemistry Scientific Program Kyoto, Sept. 9, 2011 (Poster)
13) P. Mohan, T. V. Thu, P. D. Thanh, Y. Enomoto, Y. Matsumura, H. Takahashi, D. Mott, G. Mizutani, and S. Maenosono Engineering the Structure of Gold Nanoparticle Loaded Boehmite Nanorods towards Materials with Novel and Controllable Plasmonic and Catalytic Properties 2011 MRS FALL MEETING Boston, Massachusets USA, Nov. 28, 2011 (Poster).
14) H. Takanashi, Y. Miyauchi, and G. Mizutani Observation of charge recombination processes on TiO2(110) and (011) surfaces by time-resolved second harmonic generation spectroscopy up to the millisecond regime International Symposium on Surface Science (ISSS-6) Funabori, Tokyo, Dec. 12, 2011 (Poster)
15) M. Ono, K. Uemura, T. Yamamoto, H. C. Hieu, and G. Mizutani Observation of H2O adsorbed Au(887) by Second Harmonic Spectroscopy International Symposium on Surface Science (ISSS-6) Funabori, Tokyo, Dec. 14, 2011 (Poster)
16) Y. Ogata, N. A. Tuan, and G. Mizutani Rotational anisotropy of optical second harmonic generation from Pt nanowires with boomerang-like cross- sectional shapes 7th International Symposium on Ultrafast Surface Dynamics (USD7) Brijuni Islands, Croatia, Aug. 23, 2010 (aural)
17) R. Watanabe, Y. Miyauchi, H. Hirose, and G. Mizutani Development of a high resolution UVH sum frequency microscope with an intrusion type glass window 18th Internationa Vacuum Congress (IVC-18) Beijing, China, Aug. 26, 2010 (poster)
18) A. B. EL Basaty, Y. Miyauchi, H. Nakayama, H. Sano, and G. Mizutani Sum Frequency Generation (SFG) of Short Chain Length Alkyl Self Assembled Monolayer (SAMs) on a Quartz Substrate International Conference on Nanostrudtured Materials 2010 (NANO2010) Roma, Italy, Sept 16, 2010 (poster)
19) Y. Ogata, N. A. Tuan, and G. Mizutani Optical second harmonic generation from Pt nanowires with boomerang-like cross-sectional shapes 7th International Symposium on Advanced Materials in Asia-Pacific (7th ISAMAP) JAIST International Symposium on Nano Technology 2010 (NT2010) Ishikawa high-tech exchange center, Sept. 30, 2010 (poster).
20) R. Watanabe, H. Sano, and G. Mizutani The first principle calculation of bulk second-order optical nonliearity spectrum of rutile TiO2 7th International Symposium on Advanced Materials in Asia-Pacific (7th ISAMAP) JAIST International Symposium on Nano Technology 2010 (NT2010) Ishikawa high-tech exchange center, Sept. 30, 2010 (poster).
21) Khuat Thi Thu Hien, Yoshihiro Miyauchi, and Goro Mizutani Optical sum frequency intensity images of a vicinal H-Si(111)1x1 surface 7th International Symposium on Advanced Materials in Asia-Pacific (7th ISAMAP) JAIST International Symposium on Nano Technology 2010 (NT2010) Ishikawa high-tech exchange center, Sept. 30, 2010 (poster).
22) Yoichi Ogata, Nguyen Anh Tuan, Saho Takase, and Goro Mizutani Correlation between the cross-sectional shapes of Pt nanowires on the faceted MgO(110) template and their optical second harmonic generation 5th International Symposium on Practical Surface Analysis Hotel Hyundai, Gyeongju, Korea, Oct. 7, 2010 (aural)
23) Hoang Chi Hieu , Nguyen Anh Tuan, Hongyan Li, Goro Mizutani Optical sum frequency microscopy of cellulose fibers The 9th Asia Pacific Workshop on Materials Physics Hanoi, December 13, 2010
24) H. Takahashi, R.
Watanabe, and G. Mizutani Study of
optical second harmonic spectroscopy for stepped rutile TiO2 Surfaces 7th
International Workshop on Oxide Surfaces Echigo-Yuzawa,
Jan. 13, 2010 (poster) 25) Y. Miyauchi, H.
T. T. Khuat, and G. Mizutani Sum
frequency intensity images of the H-S(111) surface during electron-hole
pair excitation and relaxation Dynamics
at Surfaces Proctor
Academy, Andover, United States, August 11, 2009 (poster) 26) H. Takahashi, R.
Watanabe, and G. Mizutani The
detection of SHG from periodic steps on rutile TiO2(110) 10th
International Conference on Atomically Controlled Surfaces, Interfaces
and Nanostructures Granada,
Spain, Sept. 22, 2009 (poster). 27) A. B. EL Basaty,
Y. Miyauchi, G. Mizutani, T. Matsushima, and H. Murata Optical
second harmonic generation due to dipole formation at heterojunction
interfaces in organic light-emitting diodes 11th
International Conference on Electronic Spectroscopy and Structure Nara,
Japan, Oct 8, 2009 (poster) 28) Y. Ogata, A. T.
Nguyen, S. Takase, and G. Mizutani Optical second
harmonic generation and TEM observation of Pt nanowires JAIST
Nano Technology Symposium 2009 (NT2009) Kanazawa,
Japan, Nov. 7, 2009 (poster) 29) A. T. Nguyen and
G. Mizutani Second
harmonic spectroscopy of Pt/Cu bimetallic nanowire arrays on NaCl(110)
faceted templates JAIST
Nano Technology Symposium 2009 (NT2009) Kanazawa,
Japan, Nov. 7, 2009 (poster) 30) C. H. Hoang, M.
Ono, and G. Mizutani Second
harmonic generation from CO adsorbed Au(887) JAIST
Nano Technology Symposium 2009 (NT2009) Kanazawa,
Japan, Nov. 7, 2009 (poster) 31) A. B. El Basaty,
Y. Miyauchi, H. Nakayama, H. Sano, and G. Mizutani Optical
sum frequency generation of octyldimethylmethoxysilane self assembled
monolayers on a quartz substrate JAIST
Nano Technology Symposium 2009 (NT2009) Kanazawa,
Japan, Nov. 7, 2009 (poster) 32) H. Takahashi, R.
Watanabe, and G. Mizutani Study of
electronic states of steps on rutile TiO2 surfaces by second harmonic
spectroscopy JAIST Nano
Technology Symposium 2009 (NT2009) Kanazawa,
Japan, Nov. 7, 2009 (poster) 33) Goro Mizutani Development
and Application of a Multi-functional Optical Sum Frequency Microscope
(Invited) 7th
International Symposium on Atomic Level Characterizations for New Materials
and Dvices e09 Maui,
Hawaii, USA, Dec. 8, 2009 (aural) 34) H. T. T. Khuat,
Y. Miyauchi, and G. Mizutani Construction
of a Pump-probe System for Observing Time Resolved Sum Frequency
Images 7th
International Symposium on Atomic Level Characterizations for New Materials
and Dvices e09 Maui,
Hawaii, USA, Dec. 8, 2009 (poster) 35) Y. Miyauchi, H.
Sano, J. Okada, H. Yamashita, and G. Mizutani Simultaneous
Optical Second Harmonic and Su Frequency Microscopy of a H-Si(111)1X1
Surface after Light Pulse Irradiation 7th
International Symposium on Atomic Level Characterizations for New Materials
and Dvices e09 Maui,
Hawaii, USA, Dec. 8, 2009 (poster) 36) Y. Ogata, H. A.
Tuan, S. Takase, and G. Mizutani Polarization
and Azimuthal Angle Dependence of Optical Second Harmonic Generation
from Pt Nanowires on the MgO(110) Faceted Template 7th
International Symposium on Atomic Level Characterizations for New Materials
and Dvices e09 Maui,
Hawaii, USA, Dec. 8, 2009 (poster) 37) H. Takahashi, R.
Watanabe, and G. Mizutani Optical
Second Harmonic Spectroscopy of the Electronic States of Stepped Rutile
TiO2(12 12 5) Surface Adsorbed with Formic Acid 7th
International Symposium on Atomic Level Characterizations for New Materials
and Dvices e09 Maui,
Hawaii, USA, Dec. 8, 2009 (poster) 38) H. C. Hieu, M.
Ono, and G. Mizutani Second
Harmonic Spectroscopy of Au(887) Adsorbed with CO 7th
International Symposium on Atomic Level Characterizations for New Materials
and Dvices e09 Maui,
Hawaii, USA, Dec. 10, 2009 (poster) 39) G. Mizutani and
Y. Miyauchi Construction
of an Optical Sum Frequency Microscope with Confocal Optics 2009 OSA
Optics & Photonics Congress: Nonlinear Optics Honolulu,
Hawaii, July 15, 2009 (poster) 40) Y. Miyauchi, H. T. T. Khuat, and G.
Mizutani Sum
frequency intensity images of the H-S(111) surface during electron-hole
pair excitation and relaxation Dynamics
at Surfaces Proctor
Academy, Andover, United States, August 11, 2009 (poster) 41) H. Takahashi, R.
Watanabe, and G. Mizutani The
detection of SHG from periodic steps on rutile TiO2(110) 10th
International Conference on Atomically Controlled Surfaces, Interfaces
and Nanostructures Granada,
Spain, Sept. 22, 2009 (poster). 42) A. B. EL Basaty,
Y. Miyauchi, G. Mizutani, T. Matsushima, and H. Murata Optical
second harmonic generation due to dipole formation at heterojunction
interfaces in organic light-emitting diodes 11th
International Conference on Electronic Spectroscopy and Structure Nara, Japan, Oct 8,
2009 (poster) 43) R. Watanabe, M.
Tamura, M. Yuasa, Y. Yahata, G. Mizutani, T. Suzuki, Y.
Segawa, Y. Matsumoto, Y. Yamamoto, and H. Koinuma Magnetization
induced surface second harmonic generation from Co:TiO2 by
using a femtosecond laser (poster) 25th
European Conference on Surface Science (ECOSS25) Liverpool,
UK, July 30, 2008. 44) T. NGUYEN and G.
MIZUTANI Optical
Second Harmonic Generation from the Pt/Cu Bimetallic Nanowire Array
on the NaCl(110) Faceted Template (aural) AVS
55th International Symposium & Exhibition Boston,
MA, USA, Oct 21, 2008 45) M. Ono and G.
Mizutani SH
intensity from air adsorbed Au(887) (poster) JAIST
Nano Technology 2008 Ishikawa,
Japan, Oct 24, 2008 46) R. Watanabe, H.
Takahashi, M. Omote, and G. Mizutani Optical
second harmonic generation from rutile TiO2(441) (poster) JAIST
Nano Technology 2008 Ishikawa,
Japan, Oct 24, 2008 47) R. Watanabe, M.
Tamura, G. Mizutani, T. Suzuki, Y. Segawa, Y. Matsumoto,
Y. Yamamoto, and H. Koinuma Anisotropy
of surface magnetization of Co doped rutile TiO2 studied by
magnetization induced optical second harmonic generation (aural) 4th
Vacuum and Surface Sciences Conference of Asia and Australia (VASCAA-4) Matsue,
Japan, Oct. 28, 2008 48) A. B. EL Basaty,
H. Nakayama, Y. Miyauchi, H. Sano, and G. Mizutani Sum
Frequency Microscopy Image of Alkyl Self Assembled Monolayer on a
Quartz Substrate (poster) 4th
Vacuum and Surface Sciences Conference of Asia and Australia (VASCAA-4) Matsue,
Japan, Oct. 29, 2008 49) Y. Miyauchi, H.
Sano, H. Yamashita, J. Okada, and G. Mizutani The
simulataneous SH and SF intensity images of hydrogen deficiency of
H-Si(111)1x1 surface irradiated by IR light pulses (poster) 4th
Vacuum and Surface Sciences Conference of Asia and Australia (VASCAA-4) Matsue,
Japan, Oct. 29, 2008 50) R. Watanabe, M.
Yuasa, Y. Yahata, G. Mizutani, T. Suzuki, Y. Segawa, Y.
Matsumoto, Y. Yamamoto, M. Katayama, and H. Koinuma Magnetication
induced second harmonic intensity as a function of the external
magnetic field from the Co doped rutile TiO2 surface (poster) International
Symposium on Surface Science and Nanotechnology (ISSS-5) Tokyo,
Japan, Nov. 10, 2008 51) A. B. El Basaty,
H. Nakayama, Y. Miyauchi, H. Sano, and G. Mizutani Sum
Frequency Spectrum of Alkyl Self Assembled Monolayers on a Quartz Substrate International
Symposium on Surface Science and Nanotechnology (ISSS-5) Tokyo,
Japan, Nov. 11, 2008 52) A. T. Nguyen and
G. Mizutani Experimental
and Phenomenological Studies of Optical Properties of the Pt/Cu
Bimetallic Nanowire Array on the NaCl(110) Faceted Template International
Symposium on Surface Science and Nanotechnology (ISSS-5) Tokyo,
Japan, Nov. 11, 2008 53) Y. Miyauchi, H.
Sano, J. Okada, and G. Mizutani Conversion
of hydride species on the H-Si(111) surface induced by IR light
pulses International
Symposium on Surface Science and Nanotechnology (ISSS-5) Tokyo,
Japan, Nov. 11, 2008 54) Ahmed El Basaty
and G. Mizutani (aural) Investigation
of Self Assembly Monolayer (SAM) by using Second Harmonic Microscopy (SHM)
and Sum Frequency Microscopy (SFM) The
1st Japan-Egypt International Symposium on Science and Technology Waseda
Univ. Japan, June 8, 2008 55) G. Mizutani, Y.
Miyauchi, and H. Sano (Invited) Optical
Sum Frequency Microscopy for Botanical Analysis The
1st Japan-Egypt International Symposium on Science and Technology Waseda
Univ. Japan, June 9, 2008 56) Kitsakorn
Locharoenrat, Haruyuki Sano, and Goro Mizutani Images
of ZnS polycrystals by confocal sum frequency microscopy(poster) The
8th International Conference on Excitonic Processes in Condensed Matter
(EXCON'08) Kyoto, June 26, 2008.
57) H. Sano, H. Miyaoka, T. Kuze, H. Mori, G. Mizutani, N. Otsuka, and M. Terano Raman Study of Magnesium Chloride Thin Films 5th International Workshop on Heterogeneous Ziegler-Natta Catalysts, Ishikawa, Japan, March 18, 2007(poster)
58) K. Locharoenrat, H. Sano, and G. Mizutani Rotational Anisotropy in Second Harmonic Intensity from Copper Nanowire Arrays on the NaCl(110) substrate 16th International Conference on Dynamical Processes in Excited States of Solids(DPC07), Segovia, Spain,June 19, 2007(poster)
59) R. Watanabe, M. Yuasa, Y. Yahata, G. Mizutani, T. Suzuki, Y. Segawa, Y. Matsumoto, Y. Yamamoto, and H. Koinuma Magnetization induced second harmonic generation from Co doped rutile TiO2 17th International Vacuum Congress (IVC-17), Stockholm, Sweden, July 2, 2007(poster)
60) K. Locharoenrat, H. Sano, and G. Mizutani Wavelength-dependent second harmonic excitation spectroscopy of copper nanowire arrays on the (110) faceted faces of NaCl crystals 17th International Vacuum Congress (IVC-17), Stockholm, Sweden, July 3, 2007(poster)
61) H. Sano, H. Yoshida, T. Oosugi, T. Murakami, Y. Takagawa, G. Mizutani, T.Ooya, and N. Yui Optical Sum Frequency Generation Study of Water Structure at the Quartz/Water Interface with Polymer Adsorption Vibration at Surfaces 12 (VAS12), Erice, Sicily, July 22, 2007(poster)
62) Y. Miyauchi, H. Sano, H. Yamashita, J. Okada, and G. Mizutani Electronic and vibrational resonant images of H-Si(111) surfaces Vibration at Surfaces 12 (VAS12), Erice, Sicily, July 24, 2007(Aural)
63) G. Mizutani, Y. Miyauchi, and H. Sano Optical Sum Frequency Microscopy for Analyzing Starch in a Water Plant Nonlinear Optics: Materials, Fundamentals and Applications 2007 Kona, Hawaii, August 1, 2007(poster) 64) K. Locharoenrat, H. Sano, and G. Mizutani Self-Organized Copper Nanowires Studied by Second Harmonic Spectroscopy Nonlinear Optics: Materials, Fundamentals and Applications 2007 Kona, Hawaii, August 1, 2007(poster) 65) R. Watanabe, M. Yuasa, Y. Yahata, G. Mizutani, T. Suzuki, Y. Segawa, Y. Matsumoto, Y. Yamamoto, and H. Koinuma Optical second harmonic light hysteresis and origin of ferromagnetism in Co doped rutile TiO2(110) surface JAIST International Symposium on Nano Technology 2007 Ishikawa, Japan, Oct. 11, 2007(poster)
66) Y. Maeda, S. Miyatake, K. Fujii, Y. Sataka, T. Iwai, and G. Mizutani Excitation photon energy dependence of the SH intensity from the high index Au surface JAIST International Symposium on Nano Technology 2007 Ishikawa, Japan, Oct. 11, 2007(poster) 67) H. Sano, H. Yoshida, T. Oosugi, T. Murakami, Y. Takagawa, G. Mizutani, T. Ooya, and N. Yui Optical Sum Frequency Generation Study of Water Structure on a Quartz Surface with Polymer Adsorption 6th International Symposium on Atomic Level Characterizations for New Materials and Devices '07 Kanazawa, Japan, Oct. 30, 2007(poster)
68) Y. Miyauchi, H. Sano, H. Yamashita, J. Okada, and G. Mizutani Images of Hydrogen Deficiency on H-Si(111) Observed by Sum Frequency Microscopy 6th International Symposium on Atomic Level Characterizations for New Materials and Devices '07 Kanazawa, Japan, Oct. 30, 2007(poster)
69) R. Watanabe, M. Yuasa, Y. Yahata, G. Mizutani, T. Suzuki, Y. Segawa, Y. Matsumoto, Y. Yamamoto, and H. Koinuma Hysteresis of Magnetization Induced Second Harmonic Generation from the Co Doped Rutile TiO2(110) Surface (Student Award) 6th International Symposium on Atomic Level Characterizations for New Materials and Devices '07 Kanazawa, Japan, Oct. 30, 2007(poster)
70) K. Locharoenrat, H. Sano, and G. Mizutani Cross-section Dependence of the Field Enhancement in Arrays of Copper Nanowires 6th International Symposium on Atomic Level Characterizations for New Materials and Devices '07 Kanazawa, Japan, Oct. 30, 2007(poster)
71) G. Mizutani and T. Iwai SHG analysis of reconstructed Au(100) and (111) surfaces The 5th HUS-JAIST-VAST Workshop on Advanced Materials Science and Technology (AMST'06) Hanoi University of Science, Hanoi, Vietnam, March 9, 2006.
72) K. Locharoenrat, A. Sugawara, S. Takase, H. Sano, and G. Mizutani Shadow deposition of copper nanowires on the faceted NaCl(110) template 24th European Conference on Surface Science Paris, France, Sept 7,2006
73) K. Locharoenrat, A. Sugawara, H. Sano and G. Mizutani Absorption Spectra of Ordered Arrays of Cu Nanowires JAIST International Symposium on Nano Technology 2006 Ishikawa, Japan, Sept. 15, 2006
74) R. Watanabe, M. Yuasa, Y. Yahata, G. Mizutani, T. Suzuki, Y. Segawa, Y. Matsumoto, Y. Yamamoto, and H. Koinuma Surface Magnetism of Co Doped Rutile TiO2(110) Studied by Magnetization Induced Optical Second Harmonic Generation JAIST International Symposium on Nano Technology 2006 Ishikawa, Japan, Sept. 15, 2006
75) Y. Miyauchi, H. Sano, K. Higashimine, and G. Mizutani Study of SHG from Bulk Si after UV Light Irradiation JAIST International Symposium on Nano Technology 2006 Ishikawa, Japan, Sept. 15, 2006
76) Y. Maeda, S. Miyatake, K. Fujii, Y. Satake, T. Iwai, and G. Mizutani Excitation Photon Energy Dependence of the SH Intensity Pattern from Au(443) JAIST International Symposium on Nano Technology 2006 Ishikawa, Japan, Sept. 15, 2006
77) N. Hayashi, T. Iwai, R. Okushio, K. Aratake, A. Sugawara, H. Sano, and G. Mizutani Optical Second Harmonic Study of Pt nanowire arrays JAIST International Symposium on Nano Technology 2006 Ishikawa, Japan, Sept. 15, 2006
78) N. Hayashi, T. Iwai, R. Okushio, K. Aratake, A. Sugawara, H. Sano, and G. Mizutani Optical Second Harmonic Spectroscopy of Pt nanowires Nanoscience at Surfaces ISSP-10, Kashiwa, Japan, Oct. 9, 2006
79) R. Watanabe, M. Omote, and G. Mizutani Spectrum of bulk SHG from rutile TiO2(001) Nanoscience at Surfaces ISSP-10, Kashiwa, Japan, Oct. 11, 2006
80) K. Locharoenrat, S. Takase, A. Sugawara, H. Sano, and G. Mizutani Surface Plasmon Resonance in Cu nanowires Nanoscience at Surfaces ISSP-10, Kashiwa, Japan, Oct. 11, 2006
81) H. Sano, H. Yoshida, T. Oosugi, T. Murakami, Y. Takagawa, T. Ooya, N. Yui, and G. Mizutani Study of the water structure on a quartz surface by optical sum frequency generation: an effect of co-adsorption of organic chain molecules Nanoscience at Surfaces ISSP-10, Kashiwa, Japan, Oct. 11, 2006
82) T. Sato, T. Suzuki, S. Yamada, H. Sano and G. Mizutani Selection-rule breaking of Raman scattering in InSb thin films grown on GaAs(001) 12th International Conference on Narrow Gap Semiconductors, Toulouse, France, July 4, 2005
83) Y. Miyauchi, H. Sano and G. Mizutani Study of hydrogen desorption and readsorption on the H-Si(111) surface by optical second harmonic microscopy JAIST International Symposium on Nano Technology 2005 Ishikawa, Japan, Sept. 15, 2005
84) N. Hayashi, T. Iwai, R. Okushio, K. Aratake, A. Sugawara, H. Sano, and G. Mizutani Optical Second Harmonic Study of Pt nanowires JAIST International Symposium on Nano Technology 2005 Ishikawa, Japan, Sept. 15, 2005
85) M. Omote, O. Suzuki, H. Kitaoka, and G. Mizutani Intensity pattern analysis of SHG from rutile TiO2(110) and TiO2(001) JAIST International Symposium on Nano Technology 2005 Ishikawa, Japan, Sept. 15, 2005
86) Ryosuke Watanabe, MikiOmote, and Goro Mizutani Bulk conribution in optical second harmonic generation from rutile TiO2(001) JAIST International Symposium on Nano Technology 2005 Ishikawa, Japan, Sept. 15, 2005
87) Haruyuki Sano, Goro Mizutani, Walter Wolf, and Raimund Podloucky Ab initio study of optical second harmonic response of the rutile TiO2(110) surface 23rd European Conference on Surface Science Berlin, Germany, Sept 7,2005
88) M. Omote, O. Suzuki, H. Kitaoka, and G. Mizutani Pattern Analysis of SHG from Rutile TiO2(110) and TiO2(001) The 10th Workshop on Similarity in Diversity Tokyo University of Science, Tokyo, Sept 8, 2005
89) G. Mizutani, A. Sugawara, and H. Sano Optical Second Harmonic Generation from Au Nanowires Osaka University - Asia Pacific - Vietnam National University, Hanoi Forum 2005 Hanoi, Vietnam, Sept. 28, 2005
90) N. Hayashi, T. Iwai, R. Okushio, K. Aratake, A. Sugawara, H. Sano, and G. Mizutani Optical Second Harmonic Spectroscopy of a Pt nanowire array International Symposium on Surface Science and Nanotechnology Omiya Sonic City, Saitama, Japan, Nov. 14, 2005
91) M. Omote, O. Suzuki, H. Kitaoka, and G. Mizutani Phenomenological analysis of SHG from rutile TiO2(110) and TiO2(001) International Symposium on Surface Science and Nanotechnology Omiya Sonic City, Saitama, Japan, Nov. 14, 2005
92) Y. Miyauchi, H. Sano and G. Mizutani SH intensity images of the H-Si(111) surface: effect of hydrogen desorption and readsorption on the surface electronic states International Symposium on Surface Science and Nanotechnology Omiya Sonic City, Saitama, Japan, Nov. 14, 2005
93) G. Mizutani and T. Iwai Comparative SHG study of reconstructed Au(100) and (111) surfaces International Symposium on Surface Science and Nanotechnology Omiya Sonic City, Saitama, Japan, Nov. 15, 2005
94) G. Mizutani, T. Kitahara, A. Sugawara, and H. Sano Optical second harmonic investigation of Au nanowires(Invited) 4th Workshop on Advanced Materials Science and Technology Ishikawa, Japan, March 8, 2005
95) G. Mizutani, A. Sugawara, and H. Sano Optical second harmonic investigation of noble metal nanowires(Invited) 2nd JAIST-KHU Joint-Symposium, Seoul, Korea, March 17, 2005
96) Y. Miyauchi, H. Sano, and G. Mizutani Study of hydrogen deficiency on H-Si(111) surfaces by optical second harmonic microscopy 2nd International Symposium on Technologies and Applications of Photoelectron Micro-Spectroscopy with Laser-based VUV Sources Tsukuba International Congress Center, Epochal, Tsukuba, Japan, Feb. 2, 2005
97) T. Iwai and G. Mizutani Anisotropy in the surface electronic states on the Au reconstructed surface JAIST International Symposium on Nano Technology 2004 Ishikawa, Japan, Sept. 9, 2004
98) R. Okushio, K. Aratake, T. Iwai, A. Sugawara, and G. Mizutani Optical second harmonic generation from Pt nanowires JAIST International Symposium on Nano Technology 2004 Ishikawa, Japan, Sept. 9, 2004
99) Y. Miyauchi, H. Sano, and G. Mizutani Spatial distribution of hydrogen deficiency on H-Si(111) surfaces observed by second harmonic generation JAIST International Symposium on Nano Technology 2004 Ishikawa, Japan, Sept. 9, 2004
100) Goro Mizutani, Takeshi Kitahara, Akira Sugawara, and Haruyuki Sano Depolarization field in Aunanowires investigated by optical second harmonic spectroscopy Nonlinear Optics: Materials, Fundamentals and Applications 2004 Waikoloa, Hawaii, August 5, 2004
101) Tetsuya Iwai and Goro Mizutani Optical second harmonic generation from the Au(100) surface state Nonlinear Optics: Materials, Fundamentals and Applications 2004 Waikoloa, Hawaii, August 4, 2004
102) Yoshihiro Miyauchi, Haruyuki Sano, and G. Mizutani Images of hydrogen deficiency on H-S(111) surface observed by second harmonic microscopy Nonlinear Optics: Materials, Fundamentals and Applications 2004 Waikoloa, Hawaii, August 4, 2004
103) T. Ooya, H. Utsunomiya, M. Eguchi, H. Hirose, H. Sano, G. Mizutani, and N. Yui Thermodynamic Advantage of Ligand-Polyrotaxane Conjugates on Multivalent Interaction Controlled Release Society 2004 Annual Meeting Honolulu, Hawaii, June 12, 2004
104) T. Iwai and G. Mizutani Optical second harmonic spectroscopy of the Au(100) 5 X 20 reconstructed surface The 7th International Conference on Atomically Controlled Surfaces, Interfaces and Nanostructures Nara, Japan, Nov. 18, 2003
105) T. Iwai and G. Mizutani Electronic states on the Au(100) reconstructed surface observed by optical second harmonic spectroscopy JAIST International Symposium on Nano Technology 2003 Ishikawa, Japan, Sept. 12, 2003
106) H. Sano, G. Mizutani, W. Wolf, and R. Podloucky First-principles calculation of optical second harmonic response from the rutile TiO2(110) surface JAIST International Symposium on Nano Technology 2003 Ishikawa, Japan, Sept. 12, 2003
107) H. Hirose, H. Sano, G. Mizutani, S. Eguchi, T. Ooya, N. Yui Raman analysis of ordered structure of water clusters around polyrotaxane: effect of mobility of cyclic molecules JAIST International Symposium on Nano Technology 2003 Ishikawa, Japan, Sept. 12, 2003
108) Y. Miyauchi, H. Sano, and G. Mizutani Optical second harmonic intensity images of a living plant in water JAIST International Symposium on Nano Technology 2003 Ishikawa, Japan, Sept. 12, 2003
109) H. Sano, A. Yamagishi, J. Kurita, G. Mizutani, and S. Seto Optical second harmonic spectroscopy of CdZnTe 5th International Conference on Excitonic Processes in Condensed Matter Darwin, Australia, 22-26 July, 2002
110) H. Sano, G. Mizutani, W. Wolf, and R. Podloucky Ab initio calculation of optical second harmonic responses of Si(111) surfaces Nonlinear Optics: Materials, Fundamentals and Applications 2002 Wailea, Maui, Hawaii, July 31, 2002
111) T. Kitahara, A. Sugawara, H. Sano, and G. Mizutani Optical second harmonic generation from self-organized Au nanowire arrays on the NaCl(110) template Nonlinear Optics: Materials, Fundamentals and Applications 2002 Wailea, Maui, Hawaii, July 31, 2002
112) G. Mizutani, T. Kitahara, A. Sugawara, and H. Sano Optical second harmonic study of self-organized Au nanowire arrays JAIST International Symposium on Nano Technology 2002 High-Tech Center, Ishikawa, Sept. 14, 2002
113) H. Sano, G. Mizutani, W. Wolf, and R. Podloucky Ab initio study of optical second harmonic response of the Si(111) surface Asia-Pacific Surface & Interface Analysis Conference 2002 Hongo, Tokyo, Japan, Oct. 3, 2002
114) “Œ—äFˆêA‘å‹´O–¾A²–ì—z”VA…’JŒÜ˜YA‘å’ËM—Y ‚•ª‰ð”\“§‰ß“dŽqŒ°”÷‹¾‚É‚æ‚éGeŽ_‰»–Œ^GeŠE–Ê\‘¢‚ÌŠÏŽ@ JAIST International Symposium on Nano Technology 2002 High-Tech Center, Ishikawa, Sept. 14, 2002
115) G. Mizutani, H. Sano, M. Kume, and H. Nakagawa Electric field distribution on a silver grating studied by optical second harmonic microscopy Nonlinear Optics: Materials, Fundamentals and Applications 2002 Wailea, Maui, Hawaii, July 31, 2002
116) M. Omote and G. Mizutani Second order nonlinear optical effect of SiO2/rutile TiO2(110) Nonlinear Optics: Materials, Fundamentals and Applications 2002 Wailea, Maui, Hawaii, July 31, 2002
117) G. Mizutani, H. Miyaoka, H. Sano, H. Mori, N. Otsuka, and M. Terano Vibrational spectra of titanium and magnesium cholorides International Symposium on Future Technologies for Polyolefin and Olefin Polymerization Catalysis Tokyo, Japan, March 21, 2001
118) H. Sano, M. Kume, H. Nakagawa, and G. Mizutani Optical Second Harmonic Intensity Image of a Metal Grating Surface The 4th Pacific Rim Conference on Lasers and ElectropOptics(CLEO/Pacific Rim 2001) Chiba, July 18, 2001(p.55)
119) M. Murao, E. Kobayashi, and G. Mizutani Optical Second Harmonic Generation from SiO2/Rutile TiO2(110) The 4th Pacific Rim Conference on Lasers and ElectropOptics(CLEO/Pacific Rim 2001) Chiba, July 18, 2001(p.55)
120) H. Sano, H. Miyaoka, T. Kuze, H. Mori, G. Mizutani, N. Otsuka, and M. Terano Raman spectra of magnesium chloride thin films Tenth International Conference on Vibrations at Surfaces Saint Malo-France, June 17, 2001
121) G. Mizutani, N. Ishibashi, S. Nakamura, T. Sekiya, and S. Kurita Optical second harmonic spectroscopy of the anataseTiO2(101) face 2000 International Conference on Excitonic Processes in Condensed Matter Osaka, August 23, 2000
122) H. Miyaoka, T. Kuze, H. Sano, H. Mori, G. Mizutani, N. Otsuka, and M. Terano Raman spectra of titanium di-, tri-, and tetra-chlorides 2000 International Conference on Excitonic Processes in Condensed Matter Osaka, August 23, 2000
123) T. Kitahara, H. Tanaka, G. Mizutani Resonant surface second harmonic generation from Au films on NaCl(100) 19th European Conference on Surface Science Madrid, Spain, September 6,2000
124) G. Mizutani, H. Sano, and S. Ushioda (Invited) Optical second harmonic microscopy of surfaces Adriatico Research Conference on Lasers in Surface Science Miramare-Trieste, Italy, 13, 2000
125) H. Miyaoka, T. Kuze, H. Sano, H. Mori, G. Mizutani, S. Ushioda, N. Otsuka, and M. Terano Raman spectrum of ball-milled a-TiCl3 1999 International Conference on Luminescence and Optical Spectroscopy of Condensed Matter Osaka, Japan, August 23, 1999
126) S. Nakamura, K. Matsuda, T. Wakasugi, E. Kobayashi, G. Mizutani, S. Ushioda, T. Sekiya, and S. Kurita Optical second harmonic generation from anatase TiO2(110) face 1999 International Conference on Luminescence and Optical Spectroscopy of Condensed Matter Osaka, Japan, August 23, 1999
127) G. Mizutani, Y. Sonoda, M. Sakamoto, H. Sano, T. Takahashi, and S. Ushioda Optical second harmonic image of starch granules in a living water plant 1999 International Conference on Luminescence and Optical Spectroscopy of Condensed Matter Osaka, Japan, August 24, 1999
128) H. Ohashi, H. Tanaka, H. Sano, J. Taira, G. Mizutani, and S. Ushioda Study of the Ge/Ge-oxide interface by optical second harmonic spectroscopy 18th European Conference on Surface Science Vienna, Austria, September 22,1999
129) H. Tanaka, T. Miyazaki, G. Mizutani and S. Ushioda The electronic state of the glass-Au interface investigated by optical second harmonic spectroscopy 2nd International Conference on Coatings on Glass Saarbruecken, Germany, Sept. 1998
130) H. Sano, G. Mizutani, S. Ushioda, T. Kitagawa, T. Kume, and S. Hayashi Enhancement of optical second harmonic response mediated by long-range guided mode 9th international conference on vibrations at surfaces Hayama, Japan, Oct. 1998
131) H. Tanaka, H. Wakimoto, T. Miyazaki, G. Mizutani, and S. Ushioda Excitation energy profile of the SH intensity from a glass-Au interface 9th international conference on vibrations at surfaces Hayama, Japan, Oct. 1998
132) E. Kobayashi, K. Matsuda, G. Mizutani, and S. Ushioda SHG observation of the rutile TiO2(110)/H2O interface under UV light illumination 9th international conference on vibrations at surfaces Hayama, Japan, Oct. 1998
133) T. Wakasugi, K. Matsuda, E. Kobayashi, G. Mizutani, S. Ushioda, N. Hosaka, T. Sekiya, and S. Kurita Step-induced optcial nonlinearity of the anatase TiO2(101) as-grown face 9th international conference on vibrations at surfaces Hayama, Japan, Oct. 1998
134) H. Miyaoka, T. Kuze, H. Sano, H. Mori, G. Mizutani, S. Ushioda, N. Otsuka, and M. Terano Raman spectroscopic study of a-TiCl3 1998 Asian-Pacific Forum on Science and Technology "Optical probing and creation of advanced photoactive materials" Ishikawa, Japan, Nov. 1998
135) E. Kobayashi, K. Matsuda, G. MIzutani, and S. Ushioda Study of rutile TiO2(110)/H2O interface by second harmonic generation 1998 Asian-Pacific Forum on Science and Technology "Optical probing and creation of advanced photoactive materials" Ishikawa, Japan, Nov. 1998
136) K. Matsuda, T. Wakasugi, E. Kobayashi, G. Mizutani, S. Ushioda, N. Hosaka, T. Sekiya, and S. Kurita SH intensity pattern from an anatase TiO2(101) as-grown face 1998 Asian-Pacific Forum on Science and Technology "Optical probing and creation of advanced photoactive materials" Ishikawa, Japan, Nov. 1998
137) H. Oohashi, H. Tanaka, H. Sano, G. MIzutani, and S. Ushioda Optical second harmonic observation of the Ge/Ge-oxide interface 1998 Asian-Pacific Forum on Science and Technology "Optical probing and creation of advanced photoactive materials" Ishikawa, Japan, Nov. 1998
138) G. Mizutani, M. Sakamoto, H. Sano, S. Yamamura, H. Kobayashi, K. Suzuki, S. Yoshimura, T. Takahashi, and S. Ushioda Optical second harmonic image of starc particles in a living plant 1998 Asian-Pacific Forum on Science and Technology "Optical probing and creation of advanced photoactive materials" Ishikawa, Japan, Nov. 1998
139) H. Tanaka, H. Wakimoto, T. Miyazaki, G. Mizutani, and S. Ushioda Resonances of SHG from a glass-Au interface 1998 Asian-Pacific Forum on Science and Technology "Optical probing and creation of advanced photoactive materials" Ishikawa, Japan, Nov. 1998
140) G. Mizutani Optical second harmonic spectroscopy of the TiO2(110)/H2O interface (Invited) 1998 Asian-Pacific Forum on Science and Technology "Optical probing and creation of advanced photoactive materials" Ishikawa, Japan, Nov. 1998
141) H. Miyaoka, H. Sano, H. Mori, G. Mizutani, S. Ushioda, N. Otsuka, M. Terano Raman observation of the basic type of Ziegler-Natta catalysts 37th Internationa Symposium on Macromolecules Gold Coats, Australia, July 1998
142) H. Miyaoka, K. Hasebe, M. Sawada, H. Sano, H. Mori, G. Mizutani, S. Ushioda, H. Otsuka, and M. Terano Raman spectrum and normal mode analysis of a-TiCl3 3rd International Symposium on Advanced Infrared and Raman Spectroscopy Vienna, Austria, July 1998
143) K. Hasebe, M. Sawada, H. Mori, G. Mizutani, S. Ushioda, N. Otsuka, M. Terano Investigation of titanium species on the surface of Ziegler catalysts 6th SPSJ International Polymer Conference Kusatsu, Japan, Oct. 1997
144) E. Kobayashi, T. Wakasugi, G. Mizutani, and S. Ushioda Optical second harmonic spectroscopy of rutile TiO2(110) in air 17th European Conference on Surface Science Enschede, The Netherlands, September 18
145) H. Tanaka, G. Mizutani, and S. Ushioda A new resonance of the surface SHG from GaAs(001) in air 17th European Conference on Surface Science Enschede, The Netherlands, September 18,1997
146) E. Kobayashi, G. Mizutani, and S. Ushioda Azimuthal Angle Dependence of the Optical Second Harmonic Intensity from the Rutile TiO2(110) Single Crystal CLEO/Pacific Rim '97 Chiba, July 17, 1997
147) H. Tanaka, T. Miyazaki, G. Mizutani, and S. Ushioda Spectrum of the SH intensity from a glass-Au interface CLEO/Pacific Rim '97 Chiba, July 17, 1997
148) E. Kobayashi, G. Mizutani, and S. Ushioda Optical Second Harmonic Generation from TiO2(110) The 2nd Asia symposium on Condensed Matter Photophysics Nara, November 1-2, 1996
149) H. Tanaka, T. Miyazaki, G. Mizutani, and S. Ushioda Excitation energy profile of the SH intensity from a glass-Au interface The 2nd Asia symposium on Condensed Matter Photophysics Nara, November 1-2, 1996
150) H. Tanaka, H. Kurokawa, E. Kobayasi, H. Sano, G. Mizutani and S. Ushioda Optical Second Harmonic Intensity Image of Multi-layered Metal Film Patterns Frontiers in Laser Physics and Spectroscopy, Tokyo, November 8-10, 1995
151) E. Tominaga, K. Suzuki, G. Mizutani, and S. Ushioda Multiphoton-Induced Luminescence from Superconducting Nb3Sn Frontiers in Laser Physics and Spectroscopy, Tokyo, November 8-10, 1995
152) S. Ushioda, K. Sakamoto and G. Mizutani Absolute Raman Scattering Cross-section of Surface Adsorbed Amorphous Nitrobenzene Layer on Ni(111) March Meeting of the American Physical Society, Seattle, March 22-26, 1993
153) T. Yamauchi, H. Sano, Y. Sonoda, G. Mizutani, and S. Ushioda Surface SHG and Photoemission from Cs, O2/p-GaAs Coadsorbed System Internal Symposium on Dynamical Quantum Processes on Solid Surfaces September 21 (20-22), 1995 (Osaka)
154) H. Sano, G. Mizutani, and S. Ushioda Raman Scattering from Trimethylaluminum (TMA) and Trimethylgallium (TMG) - Gaseous State and Adsorbed State onGaAs(100) Vibration at Surfaces VII June 14-17, 1993 |
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“Œ–k‘å’ÊŒ¤u‰‰‰ï 3) …’JŒÜ˜Y ”ñüŒ`•ªŒõ–@‚É‚æ‚éŒÅ‘̊̕]‰¿ “Œ–k‘åŠw’ÊŒ¤u‰‰‰ïA•½¬‚W”N‚RŒŽ‚P‚T“úi“Œ–k‘åŠw“d‹C’ÊMŒ¤‹†Šj
JAISTƒtƒH[ƒ‰ƒ€ 4) …’JŒÜ˜Y •\–Ê”ñüŒ`•ªŒõ–@‚Ì“W–]‚ÆSH•ªŒõ–@EŒ°”÷‹¾–@ –k—¤æ’[‘å‘æ‚S‰ñÞ—¿ƒtƒH[ƒ‰ƒ€u”ñüŒ`•ªŒõ–@‚É‚æ‚éŒÅ‘Ì•\–ÊŒ¤‹†‚Ì“WŠJv •½¬‚P‚Q”N‚P‚QŒŽ‚W“úi–k—¤æ’[‘åj
’k˜b‰ïetc. 5) …’JŒÜ˜Y Œõ‘æ“ñ‚’²”g•ªŒõ–@‚ÆŒ°”÷‹¾–@‚É‚æ‚é•\–Ê‚ÌŠÏŽ@iµ‘Òu‰‰j ‘æ‚P‚P‚W‰ñG”}‰»ŠwŒ¤‹†ƒZƒ“ƒ^[’k˜b‰ï •½¬‚P‚S”N‚RŒŽ‚U“úi–kŠC“¹‘åŠwj
6) …’JŒÜ˜Y NaCl(001)ƒtƒ@ƒZƒbƒg–Êã‚Ì‹àƒiƒmƒƒCƒ„‚©‚ç‚ÌŒõ‘æ“ñ‚’²”g”¶iµ‘Òu‰‰j “Œ‹ž‘åŠw•¨«Œ¤‹†Šæ’[—̈æƒZƒ~ƒi[ •½¬‚P‚T”N‚PŒŽ‚P‚U“úi“Œ‘唃Lƒƒƒ“ƒpƒXj
7) …’JŒÜ˜Y Œõ‘æ“ñ‚’²”gŒ°”÷‹¾–@‚É‚æ‚éŒÅ‘Ì•\–ÊŠE–ÊŠÏŽ@iµ‘Òu‰‰j ç—t‘åŠw—Šw•”•¨—Šw‰Èu‰‰‰ï •½¬‚P‚T”N‚TŒŽ‚Q“úiç—t‘åŠw¼ç—tƒLƒƒƒ“ƒpƒXj
8) …’JŒÜ˜Y “ñŽŸ”ñüŒ`ŒõŠwŒø‰Ê‚É‚æ‚é ŒÅ‘Ì•\–ÊŠE–Ê\‘¢‚ÌŠÏŽ@iµ‘Òu‰‰j ƒiƒmƒXƒsƒ“ƒgƒƒjƒNƒX‚̃fƒUƒCƒ“‚Æ‘n»‚ÉŠÖ‚·‚éu‰‰‰ï •½¬‚P‚U”N‚QŒŽ‚Q‚V“úiã‘åHj
9) ”~–{GMA…’JŒÜ˜YA‚‘º‘T ^‹ó‚ƃvƒ‰ƒYƒ}‚̉Ȋw ƒŠƒtƒŒƒbƒVƒ…—‰È‹³ˆçi‰ž—p•¨—Šw‰ï–k—¤M‰zŽx•”ŽåÃj •½¬‚P‚V”N‚VŒŽ‚Q“úi–k—¤æ’[‘åŠwj
10) …’JŒÜ˜Y –Ú“I‚ð’B¬‚·‚éŠy‚µ‚³‚Æh‚³ ‘‡ŠwKŽö‹Æ •½¬‚P‚V”N‚VŒŽ‚P‚R“úi”’ŽRŽs—§–k’C’†ŠwZj
11) …’JŒÜ˜YA‹{•”ÉAŽR‰ºŒ[ ƒ}ƒCƒiƒX‚P‚X‚UoC‚Ì¢ŠE‚ւ悤‚±‚»I ‚Ì‚Ý‚ÁŽqƒtƒFƒXƒ^‚Q‚O‚O‚U •½¬‚P‚W”N‚UŒŽ‚Q‚S“ú(ªã‘‡•¶‰»‰ïŠÙ)
12) …’JŒÜ˜Y Œ¤‹†“NŠw‚Ì‹³ˆç 21¢‹ICOEƒvƒƒOƒ‰ƒ€u’mŽ¯‰ÈŠw‚ɊȊw‹Zp‚Ì‘n‘¢‚ÆŽÀ‘Hv COEŠwÛƒZƒ~ƒi[ •½¬‚P‚W”N‚VŒŽ‚P‚W“ú
W’†u‹c 13) …’JŒÜ˜Y –¢—ˆ•¨Ž¿“Á˜_I ‘åã‘åŠwŠî‘bHŠwŒ¤‹†‰ÈW’†u‹cA•½¬‚P‚W”N‚P‚QŒŽ‚P‚R“ú`‚P‚T“ú
Šw¶•\² 14) Ryosuke Watanabe Student
Award "Hysteresis of Magnetization Induced Second Harmonic Generation
from the Co Doped Rutile TiO2(110) Surface" 6th International
Symposium on Atomic Level Characterizations for New Materials and Devices
'07 October 30, 2007 ƒCƒ“ƒ^[ƒ“ƒVƒbƒv‚̎󂯓ü‚ê 15) •xŽR¤‘D‚ê’|“à‘ñ”n ”ñüŒ`•ªŒõ–@‚É‚æ‚éŒÅ‘Ì•\–ÊŠE–Ê‚ÌŒ¤‹† •½¬‚P‚X”N‚VŒŽ‚Q‚R“ú〜‚Q‚V“ú ‘åŠw‰@‹³ˆç‰üŠvƒvƒƒOƒ‰ƒ€ 16)…’JŒÜ˜YAŠC˜V’JKŠì ƒiƒmƒ}ƒeƒŠƒAƒ‹Œ¤‹†ƒŠ[ƒ_[‚Ì‘gD“Iˆç¬ •½¬‚P‚X”N“x‘åŠw‹³ˆç‰üŠvƒvƒƒOƒ‰ƒ€‡“¯ƒtƒH[ƒ‰ƒ€ •½¬‚Q‚O”N‚QŒŽ‚P‚O“úAƒpƒVƒtƒBƒR‰¡•l ƒI[ƒvƒ“ƒLƒƒƒ“ƒpƒXƒfƒ‚ 17) …’JŒÜ˜YANguyen
Anh Tuan ‚P‚O–œ•ª‚Ì‚Pƒ~ƒŠ‚Ì‘¾‚³‚Ì‹à‘®×ü‚Ì쬂Ɗώ@ •½¬‚Q‚O”N“xJAISTƒI[ƒvƒ“ƒLƒƒƒ“ƒpƒXE SSHŽÀŒ±‹@ŠíEŒ¤‹†“à—e‚̃fƒ‚ƒ“ƒXƒgƒŒ[ƒVƒ‡ƒ“ •½¬‚Q‚O”N‚UŒŽ‚V“úAJAIST FDŒ¤C‰ï 18) …’JŒÜ˜Y ƒiƒmƒ}ƒeƒŠƒAƒ‹Œ¤‹†ƒŠ[ƒ_[‚Ì‘gD“Iˆç¬iGPƒvƒƒOƒ‰ƒ€j‚ÌŠT—v‚Æ‹ï‘Ì“IŽæ‘g‚ÌÐ‰î •½¬‚Q‚O”N‚P‚QŒŽ‚P‚X“úA¬¼ƒOƒ‰ƒ“ƒhƒzƒeƒ‹ í—ª“I‘åŠw˜AŒg‚ÉŠî‚Âu‹` 19)
…’JŒÜ˜Y Œõ‚Ì”{‰¹”¶‚ƘaŽü”g”¶‚É‚æ‚é•\–Ê”ñüŒ`ŒõŠwŒ°”÷ŠÏŽ@ •½¬‚Q‚P”N‚QŒŽ‚P‚V“úi‘ÛŠî“‹³‘åŠwAŒû“ªj •ªÍ“W‚Ö‚Ìo“W 20) …’JŒÜ˜Y ‚‹@”\Œõ˜aŽü”gŒ°”÷‹¾‚ÌŠJ” 2009•ªÍ“WACREST¬‰Ê”•\‰ï2009 •½¬‚Q‚P”N‚XŒŽ‚Q“ú—‚S“úA–‹’£ƒƒbƒZ
ƒAƒƒŠƒJ‚É‚¨‚¯‚éƒZƒ~ƒi[ 21) Goro Mizutani Optical sum frequency imaging of solid state surfaces and biological systems Seminar at University of Minnesota, Sept. 15, 2009
22) Goro Mizutani Vibrational images of asymmetric parts in solid state surfaces and biological systems Seminar at University of Vanderbilt, Sept. 17, 2009 ˜b‘è’ñ‹Ÿ 23) …’JŒÜ˜Y Œõ˜aŽü”gŒ°”÷‹¾‚ÌŒ´—‚ÆA•¨ŠÏŽ@‚ւ̉ž—p æ’[Œõ—ÊŽq‰ÈŠwƒAƒ‰ƒCƒAƒ“ƒXŒ¤‹†Šé‰æŒŸ“¢‰ï‚É‚¨‚¯‚é˜b‘è’ñ‹Ÿ •½¬‚Q‚P”N‚P‚PŒŽ‚Q‚U“úA“Œ‹ž‘åŠwHŠw•”
Šw¶•\² 24)
Hiroaki Takahashi Student
Award "Optical Second Harmonic Spectroscopy of the Electronic States of Stepped Rutile TiO2(12
12 5) Surface Adsorbed with Formic Acid" 7th
International Symposium on Atomic Level Characterizations for New Materials
and Devices '09 December
8, 2009 ‘åŠw‰@‹³ˆç‰üŠvƒvƒƒOƒ‰ƒ€ 25)
…’JŒÜ˜Y ƒiƒmƒ}ƒeƒŠƒAƒ‹Œ¤‹†ƒŠ[ƒ_[‚Ì‘gD“Iˆç¬ •½¬‚Q‚P”N“x‘åŠw‹³ˆç‰üŠvƒvƒƒOƒ‰ƒ€‡“¯ƒtƒH[ƒ‰ƒ€ •½¬‚Q‚Q”N‚PŒŽ‚V“úA“Œ‹žƒrƒbƒOƒTƒCƒg CRESTŒöŠJƒVƒ“ƒ|ƒWƒEƒ€
26) …’JŒÜ˜Y ‘½‹@”\Œõ˜aŽü”gŒ°”÷‹¾‚ðŠJ”‚µŒÅ‘Ì•\–ʂⶑ̓à‚Ì”ñ‘ÎÌŽí‚Ì0.3mm•ª‰ð ”\ƒCƒ[ƒWƒ“ƒO‚É’§í CRESTu•¨Ž¿Œ»Û‚̉𖾂Ɖž—p‚ÉŽ‘‚·‚éV‚µ‚¢Œv‘ªE•ªÍŠî”‹ZpvŒ¤‹†—Ì ˆæ‘æˆê‰ñŒöŠJƒVƒ“ƒ|ƒWƒEƒ€—Œv‘ªE•ªÍŠî”‹Zp‚̃tƒƒ“ƒeƒBƒA— •½¬‚Q‚Q”N‚RŒŽ‚P‚P“úA“sŽsƒZƒ“ƒ^[ƒz[ƒ‹
‘åŠw‰@‹³ˆç‰üŠvŽx‰‡ƒvƒƒOƒ‰ƒ€ƒtƒH[ƒ‰ƒ€ (26)…’JŒÜ˜Y ‹¦‹Æ‹³ˆç‚É‚æ‚éƒiƒmƒ}ƒeƒŠƒAƒ‹ƒTƒCƒGƒ“ƒXŒ¤‹†ƒŠ[ƒ_[‚̈ç¬iµ‘Òu‰‰j •¶•”‰ÈŠwÈ‘åŠw‰@‹³ˆç‰üŠvŽx‰‡ƒvƒƒOƒ‰ƒ€ uƒiƒmƒCƒ[ƒWƒ“ƒOEƒGƒLƒXƒp[ƒgƒvƒƒOƒ‰ƒ€vƒtƒH[ƒ‰ƒ€ ----—Œn‘åŠw‰@‹³ˆç‚Ì–â‘è“_‚͉½‚©---- •½¬‚Q‚Q”N‚P‚OŒŽ‚S“úAç—t‘åŠw‚¯‚â‚«‰ïŠÙE‘åƒz[ƒ‹ “ú—§Šî‘bŒ¤ƒtƒH[ƒ‰ƒ€ (27)…’JŒÜ˜Y …‚ƶ‘Ì‚ÌŠE–Ê‚Ì•¨—Œv‘ªiµ‘Òu‰‰j “ú—§Šî‘bŒ¤‹†ƒtƒH[ƒ‰ƒ€(APL forum 2010) …ŠÂ‹«•ª–ì‚É‚¨‚¯‚邱‚ê‚©‚ç‚ÌŠî‘bŒ¤‹† •½¬‚Q‚Q”N‚P‚QŒŽ‚Q‚P“úA“ú—§Šî‘bŒ¤EƒRƒ“ƒtƒ@ƒŒƒ“ƒXƒ‹[ƒ€ Šw¶•\² (28)Khuat Thi Thu Hien Student Award "Hydrogen Desorption from a Flat Si(111)1X1 Surface Studied by Sum Frequency Microscopyh 8th International Symposium on Atomic Level Characterizations for New Materials and Devices '11 Seoul, Korea, May 24, 2011 ‘åŠw‰@“Á•Êƒ[ƒ~ƒi[ƒ‹ (29)…’JŒÜ˜Y ‹à‘®ƒiƒmƒƒCƒ„‚Ì’f–ʃRƒ“ƒgƒ[ƒ‹‚Æ‚»‚Ì”ñüŒ`ŒõŠw‰ž“šiµ‘Òu‰‰j ‘åã“d‹C’ÊM‘åŠw‘åŠw‰@“Á•Êƒ[ƒ~ƒi[ƒ‹ •½¬‚Q‚R”N‚P‚PŒŽ‚Q‚P“úA‘åã“d‹C’ÊM‘åŠw
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