AJIRO Yoshitami | Department of Chemistry, Graduate School of Science, Kyoto University
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概要
- Ajiro Yoshitamiの詳細を見る
- 同名の論文著者
- Department of Chemistry, Graduate School of Science, Kyoto Universityの論文著者
関連著者
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AJIRO Yoshitami
Department of Chemistry, Graduate School of Science, Kyoto University
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網代 芳民
Department Of Chemistry Kyoto University:crest Japan Science And Technology Corporation (jst)
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Ajiro Y
Department Of Chemistry Graduate School Of Science Kyoto University
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網代 芳民
京大院理
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陰山 洋
Department Of Chemistry Graduate School Of Science Kyoto University
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ASANO Takayuki
Department of Physics, Kyushu University
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KIKUCHI Hikomitsu
Department of Applied Physics, University of Fukui
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Kindo K
Advanced Science Research Center Japan Atomic Energy Agency
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吉村 一良
京大院理
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網代 芳民
京大工物エネ:京大院理
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Kindo K.
Research Center For Materials Science At Extreme Conditions Osaka University
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大場 紀章
京大院理
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北野 太郎
京大院理
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GOTO Tsuneaki
Institute for Solid State Physics,University of Tokyo
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陰山 洋
京大院理
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KAGEYAMA Hiroshi
Department of Chemistry, Graduate School of Science, Kyoto University
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YOSHIMURA Kazuyoshi
Department of Chemistry, Graduate School of Science, Kyoto University
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Yasuo Narumi
Institute For Solid State Physics University Of Tokyo
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Narumi Yasuo
The Institute For Solid State Physics The University Of Tokyo
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Kindo K
Institute For Solid State Physics The University Of Tokyo
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Kindo Koichi
Institute For Solid State Physics University Of Tokyo
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Inami Toshiya
Institute For Solid State Physics University Of Tokyo:advanced Science Research Center Japan Atomic
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Inami Toshiya
Department Of Chemistry Faculty Of Science Kyoto University
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MEKATA Mamoru
Department of Applied Physics,Fukui University
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Kindo Koichi
Research Center For Materials Science At Extreme Conditions Osaka University
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Ajiro Yoshitami
Department Of Chemistry Faculty Of Science Kyoto University
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HAMASHIMA Muneki
Department of Chemistry,Faculty of Science,Kyoto University
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馬場 洋一
京大院理
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KITANO Taro
Department of Chemistry, Graduate School of Science, Kyoto University
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OBA Noriaki
Department of Chemistry, Graduate School of Science, Kyoto University
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安田 淳
京大院理
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INAGAKI Yuji
Department of Applied Quantum Physics and Nuclear Engineering Faculty of Engineering, Kyushu Univers
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NARUMI Yasuo
KYOKUGEN, Osaka University
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Takagi S
Department Of Quantum Matter Graduate School Of Advanced Sciences Of Matter Hiroshima University
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KINDO Koichi
Institute for Solid State Physics, University of Tokyo
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Yoshimura Kazuyoshi
Department Of Chemistry Graduate School Of Science Kyoto University
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MATSUURA Motohiro
Department of Physics, Faculty of Science, Kyoto University
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Kageyama Hiroshi
Department Of Chemistry Graduate School Of Science Kyoto University
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金道 浩一
東大物性研
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鳴海 康雄
東大物性研
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鳴海 康雄
東北大金研
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瀧川 仁
東大物性研
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TSUJIMOTO Yoshihiro
Department of Chemistry, Graduate School of Science, Kyoto University
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NISHI Masakazu
Institute for Solid State Physics, University of Tokyo
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NARUMI Yasuo
Institute for Solid State Physics, University of Tokyo
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Ajiro Yoshitami
Department Of Chemistry Kyoto University
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Nishii M
Institute For Solid State Physics University Of Tokyo
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Nishi Masakazu
Neutron Scattering Laboratory Institute For Solid State Physics The University Of Tokyo
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Nishi Masakazu
Institute For Solid State Physics University Of Tokyo
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Nishi Masakazu
Univ. Tokyo Chiba Jpn
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Nishi Masakazu
Institute For Solid State Phrsics University Of Tokyo
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Ajiro Yoshitami
Department Of Chamistry Faculty Of Science Kyoto University
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Tsujimoto Yoshihiro
Department Of Chemistry Graduate School Of Science Kyoto University
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Nishi Masakazu
Issp University Of Tokyo
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勝又 紘一
理研播磨研
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勝又 紘一
Riken Spring-8 Center Harima Institute
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BABA Yoichi
Department of Chemistry, Graduate School of Science, Kyoto University
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SAKON Takuo
Department of Mechanical Engineering, Faculty of Engineering and Resource Science, Akita University
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KINDO Koichi
KYOKUGEN, Osaka University
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HASEDA Taiichiro
Department of Physics, Faculty of Science, Kyoto University
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SHIMIZU Masafumi
Department of Chemistry,Faculty of Science,Kyoto University
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Kindo Koichi
Kyokugen Osaka University
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山浦 淳一
東大物性研
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西 正和
東大物性研
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陰山 洋
京大工
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KITADA Atsushi
Department of Chemistry, Graduate School of Science, Kyoto University
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UEDA Yutaka
Institute for Solid State Physics, University of Tokyo
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熊谷 健一
北大院理
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YOSHIDA Makoto
Institute of Fluid Science, Tohoku University
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Kitada Atsushi
Department Of Chemistry Graduate School Of Science Kyoto University
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Nishi Masakazu
Neutron Scattering Laboratory Issp University Of Tokyo
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Nishi M
Neutron Scattering Laboratory Issp University Of Tokyo
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Narumi Yasuo
Crest Japan Science And Technology:research Center For Materials Science At Extreme Conditions Osaka
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榊原 俊郎
北大理
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鈴木 孝
Graduate School Of Engineering Science Osaka University
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高柳 滋
北海道教育大学教育学部札幌
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廣田 和馬
東大物性研
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田中 仁
京大エネ
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鈴木 孝
金材技研
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TAKIGAWA Masashi
Institute for Solid State Physics, University of Tokyo
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Narumi Yasuo
Crest Japan Science And Technology
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伊達 宗行
Department Of Physics Faculty Of Science Osaka University
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DATE Muneyuki
Department of Physics, Faculty of Science, Osaka University
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YAMAURA Jun-Ichi
Institute for Solid State Physics, University of Tokyo
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西 正和
東京大学物性研究所
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SAITO Takashi
Institute for Chemical Research, Kyoto University
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TAKANO Mikio
Institute for Chemical Research, Kyoto University
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福井 智哉
東大物性研
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KOYAMA Keiichi
High Field Laboratory for Superconducting Materials, Institute for Materials Research, Tohoku Univer
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MOTOKAWA Mitsuhiro
High Field Laboratory for Superconducting Materials, Institute for Materials Research, Tohoku Univer
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YASUDA Jun
Department of Chemistry, Graduate School of Science, Kyoto University
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TAKEDA Kazuyoshi
Department of Applied Quantum Physics, Kyushu University
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CORNIA Andrea
Department of Chemistry, University of Modena
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GATTESCHI Dante
Department of Chemistry, University of Florence
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TERATA Norio
Department of Physics, Faculty of Education, Akita University
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KUBO Takeji
Department of Physics,Nara University of Education
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KOGA Kei-ichi
The Institute for Solid State Physics,The University of Tokyo
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ABE Hidetaro
The Institute for Solid State Physics,The University of Tokyo
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OGATA Nobuyuki
Institute for Solid State Physics, University of Tokyo
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Ueda Yutaka
Institute For Solid State Physics University Of Tokyo
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GOTO Tsuneaki
The Institute for Solid State Physics, University of Tokyo
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Nishi Masakazu
Neutron Scattering Laboratory Issp The University Of Tokyo
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上田 寛
東大物性研
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上田 寛
物性研
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萩原 政幸
阪大極限セ
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北田 敦
京大院理
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滝川 仁
東大物性研
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KIUCHI Yoko
Institute for Solid State Physics, University of Tokyo
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UEMURA Yasutomo
Department of Physics, Columbia University
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太田 仁
神戸大分子フォトセ
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板屋 恵
北海道大学院理
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吉村 一良
京大理
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KOJIMA Norimichi
Department of Basic Science, Graduate School of Arts and Sciences, The University of Tokyo
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吉田 誠
東大物性研
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阿曽 尚文
琉大院理
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KITAGAWA Hiroshi
Department of Bioresource Science, Graduate School of Agricultural Science, Kobe University
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吉村 一良
福井大工
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齋藤 高志
京大化研
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東 正樹
京大化研
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齊藤 高志
京大化研
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Mogi Iwao
Institute for Materials Research, Tohoku University
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Takeda Masayasu
Institute for Materials Research, Tohoku University
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Nakagawa Yasuaki
Institute for Materials Research, Tohoku University
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広井 善二
東大物性研
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SAKAKIBARA Toshiro
Institute for Solid State Physics, University of Tokyo
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廣井 善二
東大物性研
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竹田 和義
Dep. Of Applied Quantum Physics Kyushu Univ. Fukuoka 812-8581 Jpn
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SHINJO Teruya
Institute for Chemical Research,Kyoto University
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美藤 正樹
九工大工
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萩原 政幸
Kyokugen Osaka University
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森谷 勲
三重大学第一内科
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陰山 洋
京大理
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熊谷 健一
北大理
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森谷 勲
済生会松阪総合病院内科
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森谷 勲
東ソー
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TANAKA Hidekazu
Department of Natural History Sciences, Faculty of Science, Hokkaido University
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Uemura Yasutomo
Department Of Physics Columbia University
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樹神 克明
原子力機構:jst-trip
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樹神 克明
日本原子力研究開発機構 量子ビーム応用研究部門
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Kiuchi Yoko
Univ. Tokyo Chiba Jpn
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Kiuchi Yoko
Institute For Solid State Physics University Of Tokyo
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網代 芳民
京大理
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HORi Hidenobu
Department of Physics, Faculty of Science, Osaka University
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YOSIDA Taturu
Low Temperature Center,Osaka University
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松田 雅昌
日本原子力研究開発機構
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加倉井 和久
日本原子力機構
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Uemura Y.J.
Columbia大
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HIROI Zenji
Institute for Solid State Physics, University of Tokyo
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阿曽 尚文
東大物性研
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武田 全康
東北大学大学院理学研究科物理学専攻
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萩原 政幸
理研
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FUKUI Tomoya
Institute for Solid State Physics, The University of Tokyo
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小林 裕明
京大院理
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Lee S-H.
バージニア大学
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Qiu Y.
米国連邦標準・技術局
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松原 信一
東大物性研
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YOSHIDA Makoto
Molecular Photoscience Research Center, Kobe University
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KITANO Yumiko
Graduate School of Science and Technology, Kobe University
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SAKURAI Takahiro
Center for Supports to Research and Education Activities, Kobe University
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KIMATA Motoi
Graduate School of Science and Technology, Kobe University
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OKUBO Susumu
Molecular Photoscience Research Center, Kobe University
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OHTA Hitoshi
Molecular Photoscience Research Center, Kobe University
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HIROTA Kazuma
Institute for Solid State Physics, University of Tokyo
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HAGIWARA Masayuki
Center for Quantum Science and Technology under Extreme Conditions, Osaka University
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YOSHIDA Yasuo
Department of Applied Quantum Physics, Kyushu University
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WADA Osamu
Department of Applied Quantum Physics, Kyushu University
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TAKEO Kenji
Department of Physics, Kyushu University
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KAWAE Tatsuya
Department of Applied Quantum Physics, Kyushu University
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MULLER Achim
Facultat fur Chemie, Universitat Bielefeld
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BARBARA Bernard
Laboratorie de Magnetisme Louis Neel
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MATSUO Akira
Institute for Solid State Physics, University of Tokyo
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HOSOKAWA Kohei
KYOKUGEN, Osaka University
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OKUNISHI Kouichi
Department of Physics, Niigata University
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MAESHIMA Nobuya
Institute for Molecular Science
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ISHIDA Naoyuki
Department of Applied Physics and Chemistry, The University of Electro-Communications
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NOGAMI Takashi
Department of Applied Physics and Chemistry, The University of Electro-Communications
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KIMURA Shojiro
KYOKUGEN, Osaka University
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KOBAYASHI Atsushi
Department of Chemistry, Kyushu University
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MOTOKAWA Mitsuhiro
Institute for Materials Research, Tohoku University
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UCHIKAWA Tetsuya
Department of Applied Physics,Fukui University
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MORI Naoki
Department of Chemistry,Kyoto University
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YAMAGUCHI Yuji
Tanashi Branch,Electrotechnical Laboratory
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KIDO Giyu
Institute for Materials Research,Tohoku University
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MOGI Iwao
Department of Chemistry,Faculty of Science,Kyoto University
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BAN Toshiro
Department of Chemistry,Faculty of Science,Kyoto University
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TSUJKAWA Ikuji
Department of Chemistry,Faculty of Science,Kyoto University
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ABE Hidetaro
Institute for Solid State Physics,University of Tokyo
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KOGA Kei-ichi
Institute for Solid State Physics,University of Tokyo
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ICHIHARA Masaki
Institute for Solid State Physics, University of Tokyo
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NAKANISHI Ryu
Department of Chemistry, Graduate School of Science, Kyoto University
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NOJIRI Hiroyuki
Dapartment of Physics, Okayama University
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HIGEMOTO Wataru
Meson Science Laboratory, Institute of Materials Structure Science, High Energy Accelerator Research
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KODA Akihiro
Meson Science Laboratory, Institute of Materials Structure Science, High Energy Accelerator Research
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KADONO Ryosuke
Meson Science Laboratory, Institute of Materials Structure Science, High Energy Accelerator Research
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NAGATA Kazukiyo
Department of Physics, Faculty of Engineering, Kanagawa University
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Ueda Yutaka
Materials Design And Characterization Laboratory Institute For Solid State Physics University Of Tok
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Ueda Y
Institute For Solid State Physics University Of Tokyo
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ITO Yuji
Institute for Solid State Physics,University of Tokyo
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HIRAKAWA Kinshiro
Institute for Solid State Physics,University of Tokyo
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原 洋太
東大物性研
著作論文
- Synthesis, Structural and Magnetic Properties of the Solid Solution (CuCl_Br_x)LaNb_2O_7 (0≦x≦1)
- Bose-Einstein Condensation of Quasi-Two-Dimensional Frustrated Quantum Magnet (CuCl)LaNb_2O_7(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- 1/3 Magnetization Plateau in Spin-1/2 Square Lattice Antiferromagnet (CuBr)Sr_2Nb_3O_(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- 28pTE-6 二次元正方格子磁性体(CuCl)LaNb_2O_7の磁場中非弾性中性子散乱実験(28pTE 量子スピン系(二次元系),領域3(磁性,磁気共鳴))
- 24aXK-3 二次元スピン液体物質(CuCl)LaNb_2O_7における磁場中相転移(24aXK 量子スピン系(二次元系),領域3(磁性,磁気共鳴))
- Observation of Direct Transitions in the Ferromagnetic and Antiferromagnetic Dimer System (CH_3)_2NH_2CuCl_3 by High-Field ESR(Condensed matter : electronic structure and electrical, magnetic, and optical properties)
- Collinear Order in Frustrated Quantum Antiferromagnet on Square Lattice (CuBr)LaNb_2O_7(Condensed matter: structure and mechanical and thermal properties)
- Specific Heat Study of Novel Spin-Gapped System : (CH_3)_2NH_2CuCl_3(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Detailed ESR Measurements for the Quantum Molecular Magnet V15 at Ultra-Low Temperatures(Nanometer-Scale Magnets, Field-Induced Phase Transitions and Dynamics in Quantum Spin Systems)
- Effect of Staggered Field on the Magnetization Process of S=1/2 Antiferromagnetic Chains(Low Dimensional Systems, Field-Induced Phase Transitions and Dynamics in Quantum Spin Systems)
- High Field Magnetization and High Frequency ESR of the Quasi One-Dimensional Ising-Like Antiferromagnet CsCoCl_3 in Transverse Field(Low Dimensional Systems, Field-Induced Phase Transitions and Dynamics in Quantum Spin Systems)
- Novel Alternating Dimer Chain System (CH_3)_2NH_2CuCl_3 Studied by X-ray Structural Analyses and Magnetization Process(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- High Field Magnetization Process in a Dodecanuclear Fe(III) Ring Cluster (Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
- ESR of "the Magnetic Dangling Bond"in the Haldane State
- Magnetization Process of the Triangular Lattice Antiferromagnets,RbFe (MoO_4)_2 and CsFe (SO_4)_2
- N.M.R. Study of Magnetic Ordering in Two-Dimensional Antiferromagnet, Mn(HCOO)_2・2H_2O
- Magnetic Phase Transition of Antiferromagnet with Weak Canting Interaction
- Observation of a Field-Suppression of Spin Fluctuations in TMMC by Nuclear Magnetic Resonance
- NMR of ^F in One-Dimensional Ferromagnet CsNif_3
- Optical Investigation of the Soliton in the One-Dimensional Ising-Like Antiferromagnet CsCoCl_3.II
- Optical Investigation of Soliton in the One-Dimensional Ising-Like Antiferromagnet CsCoCl_3
- ESR of Singlet-Ground-State Magnets at Very Low Temperatures
- ESR of Cu (NH_3)_4SO_4・H_2O around Its Neel Temperature
- Antiferromagnetic Nuclear Resonance in the Quasi-Two-Dimensional (CuBr)LaNb_2O_7(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Magnetic and Structural Studies of the Quasi-Two-Dimensional Spin-Gap System (CuCl)LaNb_2O_7(Condensed matter : electronic structure and electrical, magnetic, and optical properties)
- S=1/2 Square-Lattice Antiferromagnets : (CuX)LaB_2O_7 and (CuCl)A_2B_3O_ (X=Cl, Br; A=Ca, Sr; B=Nb, Ta)(Frustrated Systems, Field-Induced Phase Transitions and Dynamics in Quantum Spin Systems)
- High Field Magnetization Process in a Dodecanuclear Fe(III) Ring Cluster
- μSR Study of Cu Benzoate at Very Low Temperature : Existence or Nonexistence of Long Range Order in Coupled Chains
- Impurity Effect on the Stability of the Ground-State Spin Configuration in Triangular Lattice Antiferromagnet CuFeO_2
- Nonlinear Magnetization of a Quasi-One-Dimensional Triangular-Lattice Antiferromagnet CsNiCl_3 up to 110 Tesla
- High-Field Magnetization of One-Dimensional S=1/2 Trimer System 3CuCl_2・2dioxane
- Low Temperature Thermal and Magnetic Properties of Haldane-Gap Antiferromagnet TMNIN
- Magnetic Phase Diagram of CsMn_Co_xCl_3・2H_2O
- 24pWL-10 反強磁性リングクラスターCr8およびCr8Cdの強磁場磁化過程とNMR(24pWL 若手奨励賞受賞記念講演・量子スピン系(クラスター系及び一般),領域3(磁性,磁気共鳴))
- 24pWL-11 フラストレーション系反強磁性リングクラスターCr8Niの強磁場磁化過程とNMR(24pWL 若手奨励賞受賞記念講演・量子スピン系(クラスター系及び一般),領域3(磁性,磁気共鳴))
- A Field Induced Antiferromagnetic Order in Cu (HCOO)_2・4D_2O above T_N
- 24aXK-4 二次元磁性体(CuX)LaNb_2O_7,(X=Cu,Br)の配向試料におけるNMR(24aXK 量子スピン系(二次元系),領域3(磁性,磁気共鳴))
- Magnetic Phase Diagrams of the Triangular Lattice Antiferromagnets CsMnI_3 and CsNiBr_3
- High Field Magnetization Process of an S=1 One-Dimensional Antiferromagnet NENP
- 28pTE-7 二次元磁性体(CuCl)LaNb_2O_7の配向試料におけるNMR(28pTE 量子スピン系(二次元系),領域3(磁性,磁気共鳴))
- 21aXH-4 励起ギャップを持つ2次元磁性体(CuCl)LaNb_2O_7におけるNQR/NMR(量子スピン系(二次元系),領域3(磁性,磁気共鳴))
- Anomalous Spectrum of ^Cs NMR in CsCuCl_3 around the Applied Field 11 T
- Successive Phase Transitions in CsNiBr_3 Observed by ^Cs NMR Including Critical Examination of the Local Field
- Nuclear Spin-Lattice Relaxation Mechanism of Singlet-ground-State Magnet with Exchange Coupling:Application to CsFeCl_3
- Nuclear Spin-Lattice Relaxation of 133Cs in CsFeCl_3 : II. LOW TEMPERATURE PROPERTIES OF SOLIDS : Magnetism : Cluster, Low Dimension
- High Field Magnetization of Quasi One Dimensional Ising Antiferromagnet CsCoCl_3
- Nuclear Spin-lattice Relaxation Due to Domain Wall solitons in CsCoCl_3
- NMR Study of the Nonmagnetic Impurity Effect on Spin Frustration in CsCoCl_3
- ^Cs NMR Study of Magnetic Ordered Phases in a Triangular Lattice Antiferromagnet CsNiCl_3
- NMR Study of Successive Phase Transitions in Triangular Lattice Antiferromagnet CsNiCl_3 : II. LOW TEMPERATURE PROPERTIES OF SOLIDS : Magnetism : Cluster, Low Dimension
- ESR Measurement in the Two-Dimensional Ferromagnet Cu(C_2H_5NH_3)_2CL_4
- Half-Field EPR in Cu (C_6H_5COO)_2・3H_2O
- Spin Dynamics in Spin-1/2 One-Dimensional Antiferromagnets at Low Temperature
- One-Dimensional Nuclear Relaxasion in Spin 1/2 Systems
- Anomalous Magnetization of RbFeCl_3 around 31T in Pulsed High Magnetic Fields
- Temperature Dependence of Spin Cluster Resonance Intensity
- Anomaly in the Angular Dependence of Proton Spin Lattice Relaxation Time in CoCl_2・2H_2O
- Spin Axis Reorientation Transition in Canted Antiferromagnet : Mn(HCOO)_2・2H_2O
- New Tetracritical Behavior in CsMnBr_3
- High Field Magnetization of Singlet Ground State System Cs_3Cr_2X_9(X=Cl,Br) up to 40 T
- Temperature Dependent ESR in a Two-Dimensional Antiferromagnet;Cu (HCOO)_2・2(NH_2)_2CO・2H_2O
- Gd^ EPR of High Temperature Superconductor GdBa_2Cu_3O_x
- ^Cs NMR Study in Quasi-One-Dimensional Ising-Like Antiferromagnet CsCoCl_3
- 28pTE-5 二次元正方格子磁性体(CuCl)LaNb_2O_7とその関連物質の磁性(28pTE 量子スピン系(二次元系),領域3(磁性,磁気共鳴))
- 21pPSB-13 S=1/2二次元正方格子を有する(CuCl)LaNb_2O_7におけるスピンギャップの観測(領域3ポスターセッション,量子スピン系(一次元系),量子スピン系(二次元系),量子スピン系(クラスター系,および一般),フラストレーション系,磁気共鳴一般,実験技術開発,磁性一般,領域3(磁性,磁気共鳴))
- 21aXH-3 S=1/2二次元正方格子を有する(CuCl)LaNb_2O_7におけるスピンギャップの観測(III)(量子スピン系(二次元系),領域3(磁性,磁気共鳴))
- Heat Capacities of Haldane-Gap Antiferromagnet NENP in Magnetic Field
- Low Temperature NMR Study of Quasi-One-Dimensional Planar Ferromagnets in a Magnetic Field
- Universality Class of Magnetic Phase Transition in the Triangular Lattice Antiferromagnet CsMnI_3
- Magnetic Phase Transition of the Triangular Lattice Antiferromagnet CsMnI_3
- New Universality Class of Antiferromagnetic Phase Transition in CsMnBr_3
- Spin Configuration Study of CsCoCl_3 by Neutron Polarization Analysis
- New Critical Exponent β of the XY Antiferromagnet on Stacked Triangular Lattice,CsMnBr_3
- Ferromagnetic Resonance of Mn/Sb Multilayered Films with Artificial Superstructure
- Z_2 Vortex-Induced Broadening of the EPR Linewidth in the Two-Dimensional Triangular Lattice Antiferromagnets,HCrO_2 and LiCrO_2
- Phase Transitions in the Frustrated ABX_3 Compounds : II. LOW TEMPERATURE PROPERTIES OF SOLIDS : Magnetism : Spin Glass
- Crystallographic Two Sublattice System : Staggered Susceptibility and Induced Staggered Magnetization in Paramagnetic State
- Reversed Domain Generation in Co-Cr Films
- Photo-Induced Phenomera in Isolated Selenium Chains