Koyama K | Institute For Solid State Physics University Of Tokyo
スポンサーリンク
概要
関連著者
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Kindo Koichi
Institute For Solid State Physics University Of Tokyo
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Kindo K
Advanced Science Research Center Japan Atomic Energy Agency
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KOYAMA Keiichi
High Field Laboratory for Superconducting Materials, Institute for Materials Research, Tohoku Univer
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Kindo K.
Research Center For Materials Science At Extreme Conditions Osaka University
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Kindo K
Institute For Solid State Physics The University Of Tokyo
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WATANABE Kazuo
High Field Laboratory for Superconducting Materials, Institute for Materials Research, Tohoku Univer
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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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KAJITA Koji
Department of Physics, Faculty of Science, Toho University
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NISHIO Yutaka
Department of Physics, Faculty of Science, Toho University
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NARUMI Yasuo
KYOKUGEN, Osaka University
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勝又 紘一
Riken Spring-8 Center Harima Institute
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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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勝又 紘一
理研播磨研
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NISHIO Yutaka
Faculty of Science, Toho University
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KAJITA Koji
Faculty of Science, Toho University
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KOYAMA Keiichi
Institute for Materials Research, Tohoku University
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網代 芳民
京大院理
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AJIRO Yoshitami
Department of Chemistry, Graduate School of Science, Kyoto University
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陰山 洋
Department Of Chemistry Graduate School Of Science Kyoto University
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KANOMATA Takeshi
Faculty of Engineering, Tohoku Gakuin University
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KATO Reizo
RIKEN (The institute of Physical and Chemical Research)
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KINDO Koichi
Institute for Solid State Physics, University of Tokyo
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萩原 政幸
Kyokugen Osaka University
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萩原 政幸
理研
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GOTO Tsuneaki
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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Wada Hirofumi
Department of Materials Science and Engineering,Kyoto University
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TAMASAKU Kenji
SPring-8/Riken
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和田 裕文
九州大
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OHTA Hitoshi
Molecular Photoscience Research Center, Kobe University
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MOTOKAWA Mitsuhiro
High Field Laboratory for Superconducting Materials, Institute for Materials Research, Tohoku Univer
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NARUMI Yasuo
ISSP, University of Tokyo
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KATSUMATA Koichi
RIKEN SPring-8 Center, Harima Institute
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KINDO Koichi
ISSP, University of Tokyo
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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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田中 仁
京大エネ
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ISHIKAWA Tetsuya
SPring-8/Riken
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Sawa H
Institute Of Materials Structure Science Kek
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Sawa Hiroshi
Department Of Physics Aoyama-gakuin University
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MOTOKAWA Mitsuhiro
Institute for Materials Research, Tohoku University
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TANAKA Yoshikazu
RIKEN SPring-8 Center, Harima Institute
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TOYOKAWA Hidenori
SPring-8/JASRI
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ISHIKAWA Tetsuya
RIKEN SPring-8 Center, Harima Institute
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KITAMURA Hideo
RIKEN SPring-8 Center, Harima Institute
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YAMAMOTO Hiroshi
RIKEN (The institute of Physical and Chemical Research)
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YOSHIMURA Kazuyoshi
Department of Chemistry, Graduate School of Science, Kyoto University
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SAWA Hiroshi
Photon Factory, Institute of Materials Structure Science
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和田 裕文
九大院理
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和田 裕文
九大理
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Suematsu H
Spring-8
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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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OKUBO Susumu
Molecular Photoscience Research Center, Kobe University
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KINDO Koichi
KYOKUGEN, Osaka University
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KIKUCHI Hikomitsu
Department of Applied Physics, University of Fukui
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TERADA Noriki
National Institute for Materials Science
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KIKKAWA Akiko
RIKEN SPring-8 Center
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FUKUI Tomoya
ISSP, University of Tokyo
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OSHIMA Yugo
The Graduate School of Science and Technology, Kobe University
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TAMURA Masafumi
RIKEN (The institute of Physical and Chemical Research)
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Ueda Yutaka
Materials Design And Characterization Laboratory Institute For Solid State Physics University Of Tok
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陰山 洋
京大工
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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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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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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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KOBAYASHI Akiko
Department of Humanities and Sciences, Nihon University
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KOBAYASHI Hayao
Department of Humanities and Sciences, Nihon 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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Tsujimoto Yoshihiro
Department Of Chemistry Graduate School Of Science Kyoto University
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鈴木 孝
金材技研
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Nishi Masakazu
Issp University Of Tokyo
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Uemura Y.J.
Columbia大
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後藤 輝孝
東北大学科学計測研究所
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BABA Yoichi
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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INAGAKI Yuji
Department of Applied Quantum Physics and Nuclear Engineering Faculty of Engineering, Kyushu Univers
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KIMATA Motoi
Graduate School of Science and Technology, Kobe University
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ASANO Takayuki
Department of Physics, Kyushu University
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SAKON Takuo
Department of Mechanical Engineering, Faculty of Engineering and Resource Science, Akita University
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IWAKI Masahiro
ISSP, University of Tokyo
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UEDA Yutaka
ISSP, University of Tokyo
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STAUB Urs
Swiss Light Source, Paul Scherrer Institut
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YAMAMOTO Tomohide
KYOKUGEN, Osaka University
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HAGIWARA Masayuki
KYOKUGEN, Osaka University
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TERATA Norio
Department of Physics, Faculty of Education, Akita University
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NISHIHARA Hironori
Faculty of Science and Technology, Ryukoku University
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KIMATA Motoi
The Graduate School of Science and Technology, Kobe University
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MOTOKAWA Mituhiro
High Field Laboratory for Superconducting Materials, Institute for Materials Research, Tohoku Univer
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AZUMA Masaki
Institute for Chemical Research, Kyoto University
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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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吉村 一良
京大院理
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KITADA Atsushi
Department of Chemistry, Graduate School of Science, Kyoto University
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KIUCHI Yoko
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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UEMURA Yasutomo
Department of Physics, Columbia University
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YOSHIDA Makoto
Institute of Fluid Science, Tohoku University
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太田 仁
神戸大分子フォトセ
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田仲 由喜夫
名大院工
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吉川 明子
物材機構
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Kitada Atsushi
Department Of Chemistry Graduate School Of Science Kyoto University
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吉村 一良
福井大工
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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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KOBAYASHI Hayao
Institute for Molecular Science, and CREST, Japan Science and Technology Agency
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美藤 正樹
九工大工
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AKIBA Hiroshi
Department of Physics, Faculty of Science, Toho University
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NAKANO Shinto
Department of Physics, Faculty of Science, Toho University
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ZHOU Biao
Department of Humanities and Sciences, Nihon University
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Nakamura Hatsuo
Faculty Of Engineering Osaka Electro-communication University
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Yoshimura Kazuyoshi
Department Of Chemistry Graduate School Of Science Kyoto University
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松浦 基浩
福井工大工
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Horvatic Mladen
Grenoble High Magnetic Field Laboratory
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中村 裕之
Graduate School Of Material Science University Of Hyogo
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SUGA Ken-ichi
The Institute for Solid State Physics, The University of Tokyo
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KINDO Koichi
The Institute for Solid State Physics, The University of Tokyo
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YAMASAKI Tomoaki
Graduate School of Human and Environmental Studies, Kyoto University
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SHIGA Masayuki
Department of Materials Science and Engineering, Kyoto University
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NAKAMURA Hiroyuki
Graduate School of Material Science, University of Hyogo
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UENO Tetsuya
Department of Cardiovascular Surgery, Graduate School of Medicine, Kagoshima University
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TANAKA Hidekazu
Department of Natural History Sciences, Faculty of Science, Hokkaido University
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Tanaka Takashi
Graduate School Of Education Hiroshima University
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Uemura Yasutomo
Department Of Physics Columbia University
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NOJIRI Hiroyuki
Institute for Materials Research, Tohoku University
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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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TAGUCHI Munetaka
RIKEN/SPring-8
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SHIMADA Kenya
Hiroshima Synchrotron Radiation Center, Hiroshima University
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NAMATAME Hirofumi
Hiroshima Synchrotron Radiation Center, Hiroshima University
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TANIGUCHI Masaki
Hiroshima Synchrotron Radiation Center, Hiroshima University
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YAMAURA Jun-Ichi
Institute for Solid State Physics, University of Tokyo
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Ochiai A
Center For Low Temperature Science Tohoku University
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志賀 正幸
Department Of Materials Science And Engineering Kyoto University
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Shiga Masayuki
Department Of Material Science And Engineering Kyoto University
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Yamasaki Tomoaki
Graduate School Of Human And Environmental Studies Kyoto University
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Yamasaki Tomoaki
Department Of Materials Science And Engineering Kyoto University
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KITANO Taro
Department of Chemistry, Graduate School of Science, Kyoto University
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Hayashi Naoaki
Graduate School of Human and Environmental Studies, Kyoto University
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FUKUI Tomoya
Institute for Solid State Physics, The University of Tokyo
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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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YASUDA Jun
Department of Chemistry, Graduate School of Science, Kyoto 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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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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TERADA Noriki
RIKEN SPring-8 Center
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TERADA Noriki
ICYS, National Institute for Materials Science
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ROTTER Martin
Institut fur Physikalische Chemie, Universitat Wien
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TANAKA Akira
Graduate School of Education, Hiroshima University
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TSUTAOKA Takanori
Graduate School of Education, Hiroshima University
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UEDA Hiroaki
ISSP, University of Tokyo
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KAMMURI Ryotaro
KYOKUGEN, Osaka University
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SUGA Ken-ichi
ISSP, University of Tokyo
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SUGAYA Takashi
ISSP, University of Tokyo
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IGA Fumitoshi
Department of Quantum Matter, ADSM, Hiroshima University
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MICHIMURA Shinji
Department of Quantum Matter, ADSM, Hiroshima University
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KAWAUCHI Makoto
KYOKUGEN, Osaka University
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BROENNIMANN Christian
Swiss Light Source, Paul Scherrer Institut
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WATANABE Tatsuo
Faculty of Engineering, Tohoku Gakuin University
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SUZUKI Takanobu
Faculty of Engineering, Tohoku Gakuin University
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OHTA Hitoshi
The Graduate School of Science and Technology, Kobe University
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OSHIMA Yugo
Institute for Materials Research, Tohoku University
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NISHIKAWA Hiroyuki
Department of Chemistry, Graduate School of Science, Tokyo Metropolitan University
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KIKUCHI Kouichi
Department of Chemistry, Graduate School of Science, Tokyo Metropolitan University
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IKEMOTO Isao
Department of Chemistry, Graduate School of Science, Tokyo Metropolitan University
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MOTOKAWA Mituhiro
Institute for Materials Research, Tohoku University
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TOMIMATSU Takahiro
Institute for Materials Research, Tohoku University
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Ueda Yutaka
Institute For Solid State Physics University Of Tokyo
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Ueda Y
Institute For Solid State Physics University Of Tokyo
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OKA Kengo
Institute for Chemical Research, Kyoto University
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MURANAKA Shigetoshi
Graduate School of Human and Environmental Sciences, Kyoto University
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AYUKAWA Shinya
Department of Applied Physics, Graduate School of Engineering, Tohoku University
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KATO Masatsune
Department of Applied Physics, Graduate School of Engineering, Tohoku University
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KOIKE Yoji
Department of Applied Physics, Graduate School of Engineering, Tohoku University
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SHIMAKAWA Yuichi
Institute for Chemical Research, Kyoto University
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MORITA Katsuhiro
Department of Physics, Tokyo Institute of Technology
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YANO Midori
Department of Physics, Tokyo Institute of Technology
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ONO Toshio
Department of Physics, Tokyo Institute of Technology
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FUJII Kotaro
Department of Chemistry, Tokyo Institute of Technology
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UEKUSA Hidehiro
Department of Chemistry, Tokyo Institute of Technology
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KAMIKAWA Tomohisa
Graduate School of Science and Technology, Kobe University
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KUNIMOTO Takashi
Department of Nano Material and Bio Engineering, Tokushima Bunri University
著作論文
- Synthesis, Structural and Magnetic Properties of the Solid Solution (CuCl_Br_x)LaNb_2O_7 (0≦x≦1)
- Mysterious Paramagnetic States of Fe 3d Spin in Antiferromagnetic Insulator of λ-BETS_2FeCl_4 System(Condensed matter: structure and mechanical and thermal properties)
- Metamagnetic Transition to Poor Conductor in BaVS_3(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)
- 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)
- 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)
- Field Induced Lattice Deformation in the Quantum Antiferromagnet SrCu_2(BO_3)_2
- Magnetization Process and the Associated Lattice Deformations in an Intermetallic Compound Gd_5Ge_3(Condensed matter : electronics structure and electrical, magnetic, and optical properties)
- Lattice Deformations Induced by an Applied Magnetic Field in the Frustrated Antiferromagnet HgCr_2O_4(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Magnetization Process in GdB_4(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Lattice Distortion in Antiferromagnetic CoO under High Magnetic Fields
- X-ray Powder Diffraction Studies of Mn_3Ga_Al_C in Magnetic Fields
- Development and Applications of Magnetooptical Measurement System Equipped with a Rotational Resonant Cavity in the Millimeter-Wave Region
- Fermi Surface Study of Quasi-Two-Dimensional Organic Conductors by Magnetooptical Measurements(Condensed Matter : Electric Structure, Electical, Magnetic and Optical Properties)
- Observation of High-Order Harmonic Resonances in Magnetooptical Measurements of (BEDT-TTF)_2Br(DIA)
- Charge and Magnetic Orderings in the Triangular-Lattice Antiferromagnet InFe_2O_4(Cross-disciplinary physics and related areas of science and technology)
- Singlet Ground State and Spin Gap in S=1/2 Kagome Antiferromagnet Rb_2Cu_3SnF_(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Ferro-Antiferromagnetic Delta-Chain System Studied by High Field Magnetization Measurements(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Magnetic Properties of Weak Itinerant Electron Ferromagnet CoVSb
- The Competition between Staggered Field and Antiferromagnetic Interactions in CuGeO_3:Fe(Impurity and Pressure Effects, Field-Induced Phase Transitions and Dynamics in Quantum Spin Systems)
- Magnetic Properties of the Diamond Chain Compound Cu_3(CO_3)_2(OH)_2(Frustrated Systems, Field-Induced Phase Transitions and Dynamics in Quantum Spin Systems)
- Cyclotron Resonance of LaBi
- Electron Spin Resonance of GdX (X=P, As, Sb and Bi) (Application of Submillimeter Wave Electron Spin Resonance for Novel Magnetic Systems)
- Electron Spin Resonance Study of Cu Benzoate Using a ^3He-^4He Dilution Refrigerator
- Pressure Effect on the Magnetic Properties of Ce(Fe_Co_x)_2(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- X-Ray Diffraction Study on the Pseudobinary Compound Ce(Fe_Co_)_2 in High Magnetic Fields (Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
- Observation of New Magnetic Phases in Ce_2Fe_ under High Pressure and High Magnetic Fields
- First-Order Phase Transition at the Curie Temperature in MnAs and MnAs_Sb_(Condensed matter: structure and mechanical and thermal properties)
- Structural Transformation of MnAs_Sb_x under High Magnetic Fields
- Field Induced Structural Transformation in MnAs
- Nonlinear Magnetization Process of Single-Crystalline FeSi : Condensed Matter: Electronic Properties, etc
- Precise Magnetization Measurements of Single-Crystalline FeSi under High Pressure
- Novel Field-induced Magnetic Transitions of GdMn_2Ge_2(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Novel Field-induced Magnetic Transitions of GdMn_2Ge_2
- Magnetization Measurements of Weak Itinerant Electron Ferromagnet Ni-Pt Alloy
- Photoemission Spectroscopy of Spinel-Type CuV_2S_4 Single Crystal(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Magnetic Entropy Changes of SmMn_2Ge_2 under High Pressure
- High-Field X-ray Diffraction Measurement of SmMn_2Ge_2
- Two-Step Structural Modulations and Fermi Liquid State in Spinel Compound CuV_2S_4(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Transport Property of an Organic Conductor α-(BEDT-TTF)_2I_3 under High Pressure : Discovery of a Novel Type of Conductor : Condensed Matter: Electronic Properties, etc.
- Low Temperature Electronic State of Organic-(Super) conductors : α-, θ- and κ-(BEDT-TTF)_2I_3 : V-B Fermiology : V Organic Superconductors
- A New Organic Metal Based on the DHTTF (Dihydrotetrathiafulvalene) Derivative, (MDHT)_2AuI_2
- Magnetic Properties and Structures of the α- and δ-Phases of ρ-NPNN (Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
- Magnetic Properties and Structures of the α- and δ-Phases of p-NPNN
- Schottky Specific Heat due to the Tunneling Rotation of Methyl Groups in Deuterated (DMe-DCNQI)_2Cu System
- Thermodynamical Study of (DMe-DCQNI)_2Cu System : Mechanism of Reentrant Metal-Insulator Transition : Condensed Matter: Structure, etc.
- Magnetoresistance of Quasi Two-Dimensional Organic Conductors κ(BEDT-TSeF)_2FeX_4 (X=Cl, Br) and Mapping of Fermi Surface(Condensed matter : electronic structure and electrical, magnetic, and optical properties)
- Out-of-Plane Resistance under Transverse Magnetic Field in Quasi-One-Dimensional Layered Metals(Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
- Intergrain Ordering of a Superconductive Ceramic of YBa_2Cu_4O_8 at Zero External Magnetic Field Studied by Linear and Nonlinear Transport Coefficients
- High Field X-Ray Diffraction Studies on MnFeP_As_
- Field-Induced Martensitic Transformation in New Ferromagnetic Shape Memory Compound Mn_Co_Ge
- Fermi Surface Study of Quasi-Two-Dimensional Organic Conductors by Magnetooptical Measurements
- Negative Divergence of Nonlinear Susceptibility at the Intergrain Phase Ordering Transition in a Superconductive Ceramic of YBa_2Cu_4O_8
- Successive Phase Transitions of a Hierarchical Nature in a YBa_2Cu_4O_8 Ceramic Superconductor
- Spontaneous Subsystem Magnetizations of a Heterogeneous Layer Antiferromagnet Mn (HCOO)_2.2D_2O
- Separate Observation of Subsystem Susceptibilities in Mn (HCOO)_2・2D_2O by Proton NMR
- Metal Instability of (DMe-DCNQI)_2 Cu Induced by Uniaxial Stress and Enhancement of Electron Mass
- Uniaxial Strain Effects on Transport Properties of a Supramolecular Organic Conductor θ-(DIETS)_2[Au(CN)_4]
- Effects of Uniaxial Strain on Transport Properties of Organic Conductor α-(BEDT-TTF)_2I_3 and Discovery of Superconductivity
- Magnetotransport Phenomena of α-Type (BEDT-TTF)_2I_3 under High Pressures
- Electronic Phases in an Organic Conductor α-(BEDT-TTF)_2I_3 : Ultra Narrow Gap Semiconductor, Superconductor, Metal, and Charge-Ordered Insulator
- Out-of-Plane Resistance of Quasi-Two Dimensional Metal (BEDT-TTF)_3Cl(DFBIB) in Transverse Magnetic Fields(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Photo-induced Insulator-Metal Transition in an Organic Conductor α-(BEDT-TTF)_2I_3(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Uniaxial Strain Effects on Transport Properties of a Supramolecular Organic Conductor θ-(DIETS)_2[Au(CN)_4] (Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)