島田 敏宏 | 東京大学大学院理学系研究科
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概要
関連著者
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島田 敏宏
東京大学大学院理学系研究科
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Shimada T
National Institute Of Advanced Industrial Science And Technology (aist)
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Hirano Y
Advanced Device Development Dept. Renesas Technology Corp.
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Hirano Y
Energy Technology Research Institute National Institute Of Advanced Industrial Science And Technolog
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HIRANO Yoichi
National Institute of Advanced Industrial Science and Technology (AIST)
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Yagi Y
Energy Technology Research Institute National Institute Of Advanced Industrial Science And Technolog
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Yagi Y
Energy Technology Research Institute (etri) National Institute Of Advanced Industrial Science And Te
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Hirano Yoichi
Energy Technology Research Institute (ETRI), National Institute of Advanced Industrial Science and Technology (AIST)
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島田 敏宏
東京大学大学院理学系研究科化学専攻
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Yagi Yasuyuki
Energy Technology Research Institute (ETRI), National Institute of Advanced Industrial Science and Technology (AIST)
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池田 進
東北大 理GCOE
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島田 敏宏
東大院理
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池田 進
東大院新領域
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SHIMADA Toshio
Electrotechnical Laboratory
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斉木 幸一朗
東大院新領域
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Koguchi H
Energy Technology Research Institute National Institute Of Advanced Industrial Science And Technolog
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Koguchi Haruhisa
Department Of Physics Faculty Of Science Kanazawa University
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MAEJIMA Yoshiki
Energy Technology Division, Electrotechnical Laboratory
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Maejima Y
Energy Technology Division Electrotechnical Laboratory
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和田 恭雄
東洋大学バイオ・ナノエレクトロニクス研究センター
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池田 進
高エネルギー研
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Sakakita H
Energy Technology Research Institute (etri) National Institute Of Advanced Industrial Science And Te
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Yagi Yasuyuki
Electrotechnical Laboratory
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Ogawa K
Electrotechnical Laboratory
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Maejima Yoshiki
Electrotechnical Laboratory
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斉木 幸一朗
東大 新領域
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小口 治久
産総研
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Sekine S
National Institute Of Advanced Industrial Science And Technology (aist)
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Ogawa Kiyoshi
Electrotechnical Laboratory
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KONDOH Yoshiomi
Department of Electronic Engineering, Gunma University
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Kondoh Y
Department Of Electronic Engineering Gunma University
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Kondoh Yoshiomi
Department Of Electrical Engineering College Of Technology Gunma University
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和田 恭雄
東洋大 学際・融合
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長谷川 哲也
神奈川科学技術アカデミー
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和田 恭雄
早大ナノテク研
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HIRANO Yoichi
Electrotechnical Laboratory
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Maejima Yoshiki
Energy Technology Division Electrotechnical Laboratory
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筒井 謙
東洋大学バイオ・ナノエレクトロニクス研究センター
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長谷川 哲也
東大院理
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筒井 謙
早大ナノテク研
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寺嶋 和夫
東大院新領域
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稲葉 克彦
株式会社リガク
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YAGI Yasuyuki
National Institute of Advanced Industrial Science and Technology (AIST)
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KOGUCHI Haruhisa
National Institute of Advanced Industrial Science and Technology (AIST)
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SHIMADA Toshio
National Institute of Advanced Industrial Science and Technology (AIST)
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SAKAKITA Hajime
National Institute of Advanced Industrial Science and Technology (AIST)
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寺嶋 和夫
東京大学大学院新領域創成科学研究科物質系専攻
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Ogawa K
Tokyo Institute Of Technology
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Sekine S
Electrotechnical Laboratory
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HIRANO Youichi
Electrotechnical Laboratory
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SAKAKITA Hajime
Energy Electronics Institute, National Institute of Advanced Industrial Science and Technology (AIST
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YAGI Yasuyuki
Energy Technology Division, Electrotechnical Laboratory, AIST, MITI
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HIRANO Yoichi
Energy Technology Division, Electrotechnical Laboratory, AIST, MITI
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KOGUCHI Haruhisa
Energy Technology Division, Electrotechnical Laboratory, AIST, MITI
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SHIMADA Toshio
Energy Technology Division, Electrotechnical Laboratory, AIST, MITI
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Sakakita Hajime
Energy Electronics Institute National Institute Of Advanced Industrial Science And Technology (aist)
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Sakakita Hajime
National Institute Of Advanced Industrial Science And Technology
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木口 学
東工大院理工
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鈴木 維允
東京大学大学院理学系研究科化学専攻
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斉木 幸一朗
東京大学大学院 新領域創成科学研究科 複雑理工学専攻
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江面 知彦
早稲田大学ナノテクノロジー研究所
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長谷川 哲也
東京大学理学部化学教室
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長谷川 哲也
東京大学 大学院理学系研究科
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伊藤 義泰
リガク
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江面 知彦
早大ナノテク研
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稲葉 克彦
リガク
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木口 学
東大院新領域
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FUJIYASU Hiroshi
Department of Electronics, Faculty of Engineering, Shizuoka University
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Fujiyasu Hiroshi
Department Of Electrical And Electronic Engineering Faculty Of Engineering Shizuoka University
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Fujiyasu Hiroshi
Department Of Electronics Faculty Of Engineering Shizuoka University
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和田 恭雄
東洋大学大学院学際・融合科学研究科
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和田 恭雄
東洋大学大学院
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Frassinetti Lorenzo
Consorzio Rfx Corso Stati Uniti
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MARTIN Piero
Consorzio RFX, Corso Stati Uniti
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ASAI Tomohiko
National Institute of Advanced Industrial Science and Technology (AIST)
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AMANO Tsuneo
Institute of Plasma Physics,Nagoya University
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Yamaguchi Shigeo
Department Of Physics Faculty Of Science Tokyo Metropolitan University:(present Address)tokyo Metrop
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Martin Piero
Consorzio Rfx Corso Stati Uniti
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Amano T
National Inst. Fusion Sci. Nagoya
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Amano Tsuneo
Institute Of Plasma Physics Nagoya University
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Asai Tomohiko
College Of Science And Technology Nihon University
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TAKEUCHI Nobunao
Department of Electrical Engineering, Faculty of Engineering, Tohoku University
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Takeuchi N
Department Of Electrical Engineering Tohoku University
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Takeuchi Nobunao
Department Of Electrical Engineering Faculty Of Engineering Tohoku Universicy
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Yamaguchi Satarou
Mitsubishi Fusion Center,Mitsubishi Electric Co.
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ISAI Masaaki
Department of Electrical and Electronic Engineering, Shizuoka University
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SHIMADA Takeyoshi
Department of Electrical and Electronic Engineering, Shizuoka University
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HIROTA Isao
Energy Technology Division, Electrotechnical Laboratory, AIST, MITI
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Nagata Akiyoshi
Plasma Engineering Faculty Of Engineering Hiroshima University
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Isai Masaaki
Department Of Electrical And Electronic Engineering Shizuoka University
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SEKINE Shigeyuki
Energy Electronics Institute, National Institute of Advanced Industrial Science and Technology
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Hirota I
Energy Technology Division Electrotechnical Laboratory Aist Miti
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KOGUCHI Haruhisa
National Institute for Advanced Industrial Science and Technology
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宮副 裕之
東京大学大学院新領域創成科学研究科
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寺嶋 和夫
東京大学大学院新領域創成科学研究科
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鈴木 維允
東大理
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島田 敏宏
東大理
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長谷川 哲也
東大理
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浅井 朋彦
日本大学理工学部
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嘉治 寿彦
東北大金研
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斉木 幸一朗
東大院理
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池田 進
東大新領域
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斉木 幸一朗
東大新領域
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嘉治 寿彦
東大院理
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齋木 幸一朗
東大理
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長谷川 哲也
東京大学大学院理学系研究科化学専攻
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大伴 真名歩
東京大学大学院理学系研究科化学専攻
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OSAKABE Toyotaka
Japan Atomic Energy Agency
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宮副 裕之
東大院新領域
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OSAKABE Toyotaka
Quantum Beam Science Directorate, Japan Atomic Energy Agency
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Malmberg Jenny-ann
Alfven Laboratory Royal Institute Of Technology
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池田 進
東北大学原子分子材料科学高等研究機構
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池田 進
東京大学大学院新領域創成科学研究科
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和田 恭雄
東洋大院学際・融合
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山川 秀充
東大院新領域
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木平 由紀
東京大学
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後藤 雄一郎
東京大学
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KAMEARI Akihisa
Mitsubishi Atomic Power Ind., Inc.
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NAGATA Akiyoshi
Institute of Plasma Physics,Nagoya University
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Tajiri Eiichi
Department of Internal Medicine, Kasai City Hospital
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Osakabe T
Quantum Beam Science Directorate Japan Atomic Energy Agency
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OGAWA Kiyoshi
Musashi Institute of Technology
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OKAMOTO Masao
Institute of Plasma Physics, Nagoya University
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SEKINE Shigeyuki
Electrotechnical Laboratory, Umezono
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ICHIKAWA Hiroshi
Department of Medical Life Systems, Faculty of Life and Medical Sciences, Doshisha University
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SHIMADA Toshihiro
PRESTO, Japan Science and Technology Corporation and The University of Tokyo, Department of Chemistr
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KOMA Atsushi
The University of Tokyo, Department of Chemistry
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MATSUOKA Akio
Department of Electrical Engineering, Gunma University
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ASHIDA Hisao
Electrotechnical Laboratory
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Sekine Shigeyuki
Electrotechnical Laboratory
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Brunsell Per
Royal Institute Of Technology
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Ashida Hisao
Electrotechnical Laboratoryt
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Okamoto Masao
Institute Of Plasma Physics Nagoya University
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Matsuoka Akio
Department Of Electronic Engineering Gunma University
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Goto Sei-ichi
Tlasma Ohsics Laborotory Faculty Of Engineering Osaka University
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Tajiri Eiichi
Department Of Electronic Engineering Gunma University
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Matsui T
Shizuoka Univ. Shizuoka Jpn
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Matsui Takaaki
Department Of Orthopaedics Graduate School Of Medical Science Kyoto Prefectural University Of Medici
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MORIMOTO Keiichiro
Department of Electrical and Electronic Engineering, Shizuoka University
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ITO Yasumitsu
Miyakoda Electronics Technical Center, Suzuki Motor Corporation
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Nogi Yasuyuki
College of Science and Technology, Nihon University
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Nogi Yasuyuki
College Of Science And Technology Nihon University
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米澤 徹
北海道大学大学院工学研究院材料科学部門
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Tagaya Yutaka
Department Of Electronic Engineering Gunma University
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SEKlNE Shigeyuki
Energy Technology Division, Electrotechnical Laboratory, AIST, MITI
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OSAKABE Takeshi
College of Science and Technology,Nihon University
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KOGUCHI Haruhisa
Electrotechnical Laboratory
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SAKAKITA Hajime
Electrotechnical Laboratory
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Nagata Akiyoshi
Institute Of Plasma Physics Nagoya University
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Koma Atsushi
The University Of Tokyo Department Of Chemistry
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MIYASHITA Kazuko
Department of Electronic Engineering,Gunma University
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KOMAGATA Shigemi
Department of Electronic Engineering,Gunma University
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SHINANO Toshiaki
Department of Electronic Engineering,Gunma University
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HIRANO Yoichi
Plasma Section, Energy Division, Electrotechnical Laboratory
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SHIMADA Toshio
Plasma Section, Energy Division, Electrotechnical Laboratory
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MAEJIMA Yoshiki
Plasma Section, Energy Division, Electrotechnical Laboratory
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YAGI Yasuyuki
Plasma Section, Energy Division, Electrotechnical Laboratory
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OGAWA Kiyosi
Plasma Section, Energy Division, Electrotechnical Laboratory
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HIRANO Yo-oichi
Electrotechnical Laboratory
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HIRANO Yo-ichi
Electrotechnical Laboratoryt
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Ito Yasumitsu
Miyakoda Electronics Technical Center Suzuki Motor Corporation
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Yamane Minoru
Mitsubishi Electric Corporation
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Oyabu Isao
Mitsubishi Electric Corporation
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Sugisaki Kiwamu
Electrotechnical Laboratory
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Hirano Yoichi
Nuclear Fusion Plasma Group, Energy Electronics Institute, National Institute of Advanced Industrial
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Koguchi Haruhisa
Nuclear Fusion Plasma Group, Energy Electronics Institute, National Institute of Advanced Industrial
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Sakakita Hajime
Nuclear Fusion Plasma Group, Energy Electronics Institute, National Institute of Advanced Industrial
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Shimada Toshio
Nuclear Fusion Plasma Group, Energy Electronics Institute, National Institute of Advanced Industrial
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Yagi Yasuyuki
Nuclear Fusion Plasma Group, Energy Electronics Institute, National Institute of Advanced Industrial
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Matsui Takaaki
Department Of Electrical And Electronic Engineering Shizuoka University
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SEKINE Shigeyuki
National Institute of Advanced Industrial Science and Technology (AIST)
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Hirota Isao
Electrotechnical Laboratory, AIST, MITI
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Baig Tariq
Electrotechnical Laboratory, AIST, MITI
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Shimada Toshihiro
Prest Japan Science And Technology Corporation (jst)
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Baig Tariq
Electrotechnical Laboratory Aist Miti:(present Address)quaid-i-azam University
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Kameari A
Mitsubishi Atomic Power Industries Inc.
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Kameari Akihisa
Mitsubishi Atomic Power Ind. Inc.
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Miyashita Kazuko
Department Of Electronic Engineering Gunma University
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Komagata Shigemi
Department Of Electronic Engineering Gunma University
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Ichikawa Hiroshi
Department Of Electrical And Electronic Engineering Shizuoka University
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Sugisaki K
Electrotechnical Laboratory
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Morimoto K
Department Of Applied Physics National Defense Academy
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長谷川 哲也
東京大学大学院理学系研究科
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Koguchi Haruhisa
Nuclear Fusion Plasma Group Energy Electronics Institute National Institute Of Advanced Industrial Science And Technology (aist)
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八木 康之
Electrotechnical Laboratory
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Okamoto Masao
Institute of Plasma Physics,Nagoya University
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HIRANO Yoichi
Plasma Frontier Group, Energy Technology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST)
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SHIMADA Toshio
Plasma Frontier Group, Energy Technology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST)
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OKAMOTO Masao
Institute of Atomic Energy, Kyoto University
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SEKlNE Shigeyuki
Energy Electronics Institute, National Institute of Advanced Industrial Science and Technology
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SAKAKITA Hajime/YAGI
Energy Technology Division, Electrotechnical Laboratory, AIST, MITI/Energy Technology Division, Electrotechnical Laboratory, AIST, MITI/Energy Technology Division, Electrotechnical Laboratory, AIST, MITI/Energy Technology Division, Electrotechnical Labora
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Yagi Yasuyuki
Chiyoda-ku, Tokyo 101-8308
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Hirano Yoichi
Chiyoda-ku, Tokyo 101-8308
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Sekine Shigeyuki
Chiyoda-ku, Tokyo 101-8308
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Koguchi Haruhisa
Chiyoda-ku, Tokyo 101-8308
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Shimada Toshio
Chiyoda-ku, Tokyo 101-8308
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Hirota Isao
Chiyoda-ku, Tokyo 101-8308
著作論文
- 光照射による有機薄膜成長制御
- 光照射による有機薄膜成長制御(有機超薄膜と有機デバイス, 一般)
- 分子エレクトロニクスのためのドライプロセス (特集 分子エレクトロニクスの展望)
- ペンタセン超薄膜のエピタキシャル成長と光電子分光
- 25aYC-11 有機グラフォエピタキシーの基板依存性から見たその成長機構(25aYC ナノチューブ・ナノワイヤ・結晶成長,領域9(表面・界面,結晶成長))
- 28pXJ-9 人工周期構造を持つ熱酸化シリコン基板上におけるsexithiopheneの面内選択配向成長(28pXJ 結晶成長,領域9(表面・界面,結晶成長))
- 金-ペンタセン-ナノ接合におけるコンダクタンス揺らぎの量子化
- 有機半導体のグラフォエピタキシー(応用を視野においた有機半導体の結晶成長)
- アモルファス基板上における有機薄膜の面内配向制御 : 電界効果トランジスタへの応用に向けて
- 21aRB-7 グラフォエピタキシーによって面内配向制御した有機FETの特性評価(有機FET1,領域7,分子性固体・有機導体)
- 21aRJ-12 グラフォエピタキシーによる有機半導体薄膜の配向制御とFETへの応用(有機FET1,領域7,分子性固体・有機導体)
- 28pRC-5 AlPcCl薄膜のin situ FET特性(28pRC 分子素子,領域7(分子性固体・有機導体))
- 21aXA-10 有機薄膜トランジスタの膜厚依存性と電界効果電荷注入(有機FET,領域7(分子性固体・有機導体))
- 26pYK-7 有機薄膜トランジスタ断面の電位分布からみた電界効果電荷注入(FET,領域7(分子性固体・有機導体))
- 有機ELにおける磁場効果 : 有機スピントロニクスの舞台として
- 28pXJ-11 偏光配向したAlq3薄膜の結晶構造解析(28pXJ 結晶成長,領域9(表面・界面,結晶成長))
- 特集 ナノ結晶の成長と新機能
- 有機半導体分子の配向薄膜作製と応用
- 有機分子のエピタキシャル薄膜成長における光励起の影響(有機結晶の新展開)
- 変調分子線を用いた有機薄膜蒸着基礎過程の解明
- 有機薄膜FETの電子分光
- Electron Spectroscopy of C_ Thin Film FET Structures
- OME2000-42 パルス分子線を用いた有機エピタキシー素過程の探求
- Operating Conditions to Achieve High Performance in PPCD in a Reversed-Field Pinch Plasma
- Operating Conditions to Achieve High Performance in PPCD in a Reversed-Field Pinch Plasma
- 27pZP-3 ケルビンプローブフォース顕微鏡による有機薄膜トランジスタ断面の電位分布測定(領域7,領域8合同 : 分子デバイスII)(領域7)
- 27pZP-3 ケルビンプローブフォース顕微鏡による有機薄膜トランジスタ断面の電位分布測定(領域7,領域8合同 分子デバイスII)(領域8)
- Effect of Pressure on Mode Transition Point of Reversed Field Pinch Plasma in Partially Relaxed States
- Numerical Study on Transition Point of Relaxed Mode for Reversed Field Pinch with Partial Loss of Helicity
- A New Technique Keeping off the Mn Evaporant from Oxygen Atmosphere during Reactive Evaporation Process : Surfaces, Interfaces, and Films
- Priority of the Mn Deposition Rate in Reactive Evaporation Conditions
- The First Plasma Rotation Measurement in a Large Reversed-Field Pinch Device,TPE-RX : Fluids, Plasmas, and Electric Discharges
- Numerical Study of Reversed Field Pinch Equilibria
- Observations of High Ion Temperatures in a Reversed Field Pinch Plasma
- Bolometric Measurement of Reversed Field Pinch Plasma in TPE-1R (M)
- Partially Relaxed Minimum Energy States of Reversed-Field-Pinch Plasma
- Effects of Impurities and Neutrals on Setting-Up Phase of Reversed Field Pinch
- A Realistic Approach to Improve the Shell Proximity of an RFP Device
- Partially Relaxed States of Plasmas in Two Different Types of Devices
- Control of the Locked Mode in a Reversed-Field Pinch Plasma Using a Rotating Toroidal Field
- Figure of Merit for the Improvement of Confinement in Pulsed Poloidal Current Drive Experiments in Reversed-Field Pinch Devices
- Measurement of Vacuum Vessel Current and its Relation to Locked Mode in a Reversed-field Pinch Device, TPE-RX(Nuclear Science, Plasmas, and Electric Discharges)
- Confinement Improvement in a Single Helical State of' the Reversed Field Pinch Plasma on TPE-1RM20 : Fluids, Plasmas, and Electric Discharges
- Plasma and Mode Rotations in a Reversed-Field Pinch Device, TPE-1RM20
- Outline of a Large Reversed Field Pinch Machine,TPE-RX
- Measurement of Fast Electron Velocity Distribution Function in a Reversed Field Pinch Plasma