Itoh Masakazu | Department Of Energy Engineering And Science Nagoya University
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概要
関連著者
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Itoh Masakazu
Department Of Energy Engineering And Science Nagoya University
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岩田 真
名大院工
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Iwata M
Meiji Seika Kaisha Ltd. Yokohama Jpn
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岩田 真
名工大院工
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岩田 真
名工大
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Itoh Yuuki
Electrical And Electronic Engineering Department Gifu University
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Ishibashi Y
九州大
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Ishibashi Yoshihiro
Business Communication Research Institute Aichi Shukutoku University
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Iwata Makoto
Department Of Applied Physics School Of Engineering Nagoya University
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前田 雅輝
名工大
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石橋 善弘
愛知淑徳大
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前田 雅輝
名工大・工
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青柳 倫太郎
名工大
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Ishibashi Yoshihiro
Faculty Of Business Aichi Shukutoku University
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安田 直彦
岐阜大工
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Ishibashi Yoshihiro
Synthetic Crystal Research Laboratory School Of Engineering Nagoya University
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Yasuda Naoki
Department Of Electronic Engineering Faculty Of Engineering Osaka University
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Yasuda Naoki
Advanced Tech. R/d Center Mitsubishi Electric Co. Ltd.
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Yasuda Naohiko
Department Of Electrical Engineering Faculty Of Engineering Gifu University
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大和 英弘
岐阜大工
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Ohwa Hidehiro
Electronic And Information Engineering Department Gifu University
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辻見 裕史
北大電子研
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寺内 暉
関学大理工
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寺内 暉
関西学院大・理
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寺内 暉
関西学院大
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鈴木 〓雄
名工大
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岩田 真
名工大工
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藤田 一彦
岐阜高専
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Rahman Md.M.
岐阜大工
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山下 洋八
東芝
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安田 直彦
岐阜大学
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鬘谷 浩平
名工大
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加藤 貞治
名工大
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石橋 善弘
九州大
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鈴木 久男
静岡大学工学部物質工学科
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鈴木 久男
静岡大学 創造科学技術大学院
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趙 成華
名工大
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IWATA Makoto
Department of Engineering Physics, Electronics and Mechanics, Graduate School of Engineering, Nagoya
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榊原 耕平
名工大
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森下 拓磨
名工大
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Yamada Y
Department Of Quantum Science And Energy Engineering Tohoku University
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Yoshida Y
Department Of Energy Engineering And Science Nagoya University
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石橋 善弘
九州大理
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Yamada Y
Akita Univ. Akita Jpn
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Suzuki H
Research Institute For Electronic Science Hokkaido University
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鈴木 久男
静岡大 創造科学技術大学院
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TAKAI Yoshiaki
Department of Electronics Engineering, Nagoya University
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SUZUKI Takashi
Department of Biochemistry, University of Shizuoka, School of Pharmaceutical Sciences, Core Research
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高畠 敏郎
Department Of Quantum Matter Adsm Hiroshima University:institute For Advanced Materials Research Hir
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八木 駿郎
北大電子研
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伊藤 文彦
名工大
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石橋 善弘
九大院理
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Yoshida Yutaka
Department of Structural Pathology Institute of Nephrology, Graduate School of Medical and Dental Sc
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松下 三芳
Jfeミネラル:crest
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TAKABATAKE Toshiro
Department of Quantum Matter,Graduate School of Advanced Science of Matter,Hiroshima University
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Takagi S
Department Of Quantum Matter Graduate School Of Advanced Sciences Of Matter Hiroshima University
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前田 雅輝
名工大工
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八木 駿郎
北大院理
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鈴木 里司
岐阜大工
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松下 三芳
川鉄工業
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石橋 善弘
名大 工
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脇谷 尚樹
静岡大学 工学部 物質工学科
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鈴木 久男
静岡大工
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高井 義造
Department Of Material And Life Science Graduate School Of Engineering Osaka University
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MAEDA Masaki
Department of Engineering Physics, Electronics and Mechanics, Graduate School of Engineering, Nagoya
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黒田 敬太
名工大工
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長谷川 祐介
名工大工
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Tsutsui Satoshi
Department Of Materials Science And Technology Iwate University
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Yokoyama Y
Inst. For Materials Res. Tohoku Univ.
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向田 昌志
山形大学工学部電気電子工学科
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堀田 将
北陸先端科学技術大学院大学材料科学研究科
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中田 洋平
北大電子研
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鬘谷 浩平
名工大工
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Yagi T
Hokkaido Univ. Sapporo
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Ichinose A
Central Res. Inst. Of Electric Power Ind. Kanagawa Jpn
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Takabatake Toshiro
Department Of Quantum Matter Adsm Hiroshima University:institute For Advanced Materials Research Hir
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UMEO Kazunori
Department of Quamtam Matter, ADSM, Hiroshima University
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MURO Yuji
Department of Quantum Matter, ADSM, Hiroshima University
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Yagi T
Department Of Physics Kyushu University
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NAKAGAWA Tessui
Department of Quantum Matter, ADSM, Hiroshima University
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Muro Y
Hiroshima Univ. Hiroshima
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Muro Yuji
Institute For Solid State Physics University Of Tokyo
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Muro Yuji
Department Of Material Science Graduate School Of Science & Technology Kobe University
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Mukaida Masashi
Kyushu Univ. Fukuoka Jpn
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Takai Yoshiaki
Depertment Of Electrical Engineering Nagoya University
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Takai Yoshiaki
Nagoya University
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飯島 直也
名工大
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Takabatake Toshiro
Department Of Quantum Matter Adsm Hiroshima University
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Umeo K
Department Of Quantum Matter Graduate School Of Advanced Sciences Of Matter Hiroshima University:cry
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Nakagawa Tessui
Department Of Quantum Matter Adsm Hiroshima University
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ICHINO Yusuke
Department of Energy and Science, Nagoya University
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Tsutsui Satoshi
Department Of Material Physics Faculty Of Engineering Science Osaka University
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ICHINO Yusuke
Nagoya University
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MATSUMOTO Kaname
Kyushu Institute of Technology
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Ichino Yusuke
Department Of Electronics Nagoya University
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Suzuki Taira
Department Of Mterials Science And Technology Science University Of Tokyo
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Matsumoto Kaname
Department Of Materials Science And Engineering Kyushu Institute Of Technology
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Ito Y
Fukushima Technol. Center Fukushima Jpn
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Yamada Y
Superconductivity Research Laboratory International Superconductivity Technology Center
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Matsuda M
Institute For Solid State Physics University Of Tokyo
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Maeda Masaki
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Maeda Masaki
Department Of Engineering Physics Electronics And Mechanics Graduate School Of Engineering Nagoya In
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Horii Shigeru
Department Of Applied Chemistry University Of Tokyo
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Horii Shigeru
Dept.of Crystalline Materials Science Nagoya University
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出口 潔
静岡理工科大
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向田 昌志
九大工
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Kita Ryusuke
Department Of Electrical And Electronic Engineering Shizuoka University
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Kita Ryusuke
Shizuoka University
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TAKEDA Kazuyoshi
Department of Applied Quantum Physics, Kyushu University
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岡田 恒二
名工大工
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鈴木 [イク]雄
名工大工
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鈴木 雄
名工大工
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舘 義仁
JFEミネラル(株)技術研究所
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大塚 昌太
岐阜大工
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橋本 慎司
岐阜大工
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Rahman Md.
岐阜大工
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折原 宏
名大・理工総研
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大野 智也
北見工業大学 マテリアル工学科
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脇谷 尚樹
静岡大工
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脇谷 尚樹
静大工
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鈴木 久男
静大工
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Orihara Hiroshi
Nippon Soken Inc.
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Yokoyama Yoshihiko
Institute For Materials Research Tohoku University
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ISHIBASHI Yoshihiro
Department of Applied Physics, School of Engineering, Nagoya University
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Ryusuke Kita
Department Of Electrical And Electronic Engineering Shizuoka University
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Maeda M
Graduate School Of Information Science And Electrical Engineering Kyushu University
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前田 三男
久留米高等専門学校
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前田 三男
九州大学大学院システム情報科学研究院電子デバイス工学部門
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SAKAKIBARA Kohei
Department of Engineering Physics, Electronics and Mechanics, Graduate School of Engineering, Nagoya
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AOYAGI Rintaro
Department of Engineering Physics, Electronics and Mechanics, Graduate School of Engineering, Nagoya
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青柳 倫太郎
名工大工
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Aoyagi Rintaro
Department Of Engineering Physics Electronics And Mechanics Graduate School Of Engineering Nagoya In
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Sakakibara Kohei
Department Of Engineering Physics Electronics And Mechanics Graduate School Of Engineering Nagoya In
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Hlinka J.
チェコ物理研
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折原 宏
Hokkaido Univ. Sapporo
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Maeda M
Department Of Engineering Physics Electronics And Mechanics Graduate School Of Engineering Nagoya In
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Ichinose Ataru
Central Research Institute Of Electric Power Industry
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MATSUMOTO Kaname
Department of Materials Science, Graduate School of Engineering, Tohoku University
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Takabatake Toshirou
Department Of Quantum Matter Adsm Hiroshima University
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前川 直紀
名工大
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石橋 善弘
九大理
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高橋 菜津美
岐阜大工
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鈴木 大輔
静岡大工
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UMEO Kazunori
Cryogenics and Instrumental Analysis Division, N-BARD, Hiroshima University
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Hlinka J.
チェコ物理学研究所
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Kita R
Shizuoka Univ. Hamamatsu Jpn
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Kita Ryusuke
Shizuoka Univ. Hamamatsu Jpn
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Tatsuoka Sho
Graduate School Of Science Tokyo Metropolitan University
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Kitazawa K
Department Of Superconductivity University Of Tokyo
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Saito Atsushi
High Field Laboratory For Superconducting Materials Institute For Materials Research Tohoku Universi
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Yamamoto Y
College Of Engineering Hosei University
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SUZUKI Ikuo
Department of Electronics,Nagoya Institute of Technology
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OKADA Koji
Department of General Surgical Science, and 21st Century COE Program, Graduate School of Medicine, G
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Yamamoto Yuichi
Division Of Electronic And Information Engineering Faculty Of Technology Tokyo University Of Agricul
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Yamada Yuh
National Research Institute For Metals
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大野 智也
静岡大工
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鈴木 旻雄
名工大
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Yamamoto Y
Nippon Steel Corp. Kawasaki Jpn
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Susaki Tomofumi
Department Of Physics And Department Of Complexity Science And Engineering University Of Tokyo:(pres
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Yoshida Yoichi
The Institute Of Scientific And Industrial Research Osaka University
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阪野 智一
岐阜大工
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YASUDA Naohiko
Electrical and Electronic Engineering Department, Gifu University
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ITOH Yuuki
Electrical and Electronic Engineering Department, Gifu University
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OHWA Hidehiro
Electrical and Electronic Engineering Department, Gifu University
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MATUSHITA Mituyoshi
Kawatetu Mining Co., Ltd.
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YAMASHITA Yohachi
Corporate R&D Center, Toshiba Corporation
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ISHIBASHI Yoshihiro
Faculty of Business, Aichi Shukutoku University
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Hirabayashi Izumi
Superconductivity Research Laboratory, ISTEC
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HIROSE Fumihiko
Yamagata University
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Yamada Yasusada
Advanced Research Institute Waseda University:advanced Science Research Center Japan Atomic Energy R
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Orihara Hiroshi
Applied Physics Department Graduate School Of Engineering Nagoya University
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Deguchi Hiroyuki
Department Of Applied Science Faculty Of Engineering Kyushu University
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ICHINOSE Ataru
Electrical Physics Department, Komae Research Laboratory, Central Research Institute of Electric Pow
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HORII Shigeru
Department of Superconductivity, University of Tokyo
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MUKAIDA Masashi
Department of Electrical and Information Engineering, Yamagata University
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MUKAIDA Masashi
Yamagata University
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ITO Masashi
Yamagata University
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HORII Shigeru
University of Tokyo
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MATSUMOTO Kaname
Kyoto University
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YOSHIDA Yutaka
Nagoya University
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SAITO Atsushi
Yamagata University
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KOIKE Kunihiro
Yamagata University
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OHSHIMA Shigetoshi
Yamagata University
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SUDOH Kimihiko
Department of Energy Engineering and Science, Nagoya University
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Yamashita Y
Power Supply Materials And Devices Laboratory Corporate R&d Center Toshiba Corporation
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Yamashita Yohachi
Corporate R&d Center Toshiba Corporation
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Yamashita Yohachi
Toshiba Materials & Devices Research Laboratories
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Yamashita Yohachi
Corporate R&d Center Toshiba Corp.
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DEGUCHI Kiyoshi
Department of Materials Science, Shizuoka Institute of Science and Technology
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Sudoh K
Nagoya Univ. Nagoya Jpn
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Sudoh Kimihiko
Department Of Energy Engineering And Science Nagoya University
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Matsuda Masaaki
Department Of Physics Tohoku University
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Yamashita Yoshio
Sortec Corporation:(present Address) Oki Electric Industry Co. Ltd.
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Yamashita Yasuharu
Synthetic Crystal Research Laboratory School Of Engineering Nagoya University
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Yamamoto Yoshitugu
Department Of Chemistry For Materials Faculty Of Engineering Mie University
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Yamashita Y
Graduate School Of Natural Science And Technology Okayama University
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出口 潔
静岡理工科大 理工
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Deguchi Kiyoshi
Department Of Materials And Life Science Shizuoka Institute Of Science And Technology
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Suzuki Ikuo
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Koike K
Department Of Basic Technology Faculty Of Engineering Yamagata University
著作論文
- 領域10「強誘電体格子系の精密制御法と新物性」(2009年秋季大会シンポジウムの報告)
- 20pHS-8 Pb(Zn_Nb_)-8%PbTiO_3混晶の電場相図(20pHS 誘電体(リラクサー),領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- 28aYJ-5 TGS劈開面のAFM観察II(誘電体(TGS・硫安系),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 20pHS-7 ブリジマン法で作製されたBi-O格子欠陥によるrandom fieldに基づくリラクサ固溶体Na_Bi_TiO_3-BaTiO_3単結晶の圧電特性(20pHS 誘電体(リラクサー),領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- 30aXK-12 C_5H_6NBF_4の誘電分散(誘電体)(領域10)
- 27aYJ-12 リラクサ強誘電体固溶体NBTBTに於ける格子欠陥に基ずく誘電・圧電特性(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 30aRF-5 リラクサ強誘電体固溶体の圧電応答に於けるナノツインドメインの電界誘起分極反転(30aRF 誘電体(リラクサー),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 23pYE-6 MPB近傍でのリラクサ強誘電体固溶体PMNTの圧電・誘電応答に及ぼす圧力誘起自由エネルギ変化の影響(誘電体(リラクサー関連),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 19pXA-8 MPB近傍のリラクサ強誘電体固溶体の圧電応答への外力の効果(誘電体(リラクサー),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- 24aTE-4 Pb(Zn_Nb_)O_3-PbTiO_3混晶のラマン散乱II(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 21aXA-1 Bi_La_xTi_3O_の相図II(誘電体(ペロブスカイト),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- Dielectric study of phase transitions in Pb(Zn_Nb_)O_3-PbTiO_3
- 27aYJ-8 Pb(Zn_Nb_)O_3の低周波光学フォノンによるラマン散乱(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 30pRF-1 (1-x)Pb(In_Nb_)O_PbTiO_3混晶の濃度相境界(30pRF 誘電体(ペロブスカイト),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 21aVE-5 Pb(Zn_Nb_)O_3-PbTiO_3混晶のポーリングされた結晶の相図(21aVE 誘電体(マルチフェロ・リラクサー),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 24aYE-8 TGS劈開面のAFM観察(誘電体(水素結合),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 24aTE-1 電場下におけるPMNの誘電特性(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 24aTE-3 (1-x)Pb(In_Nb_)O_3-xPbTiO_3混晶の相転移(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 24aTE-7 リラクサ強誘電体固溶体の圧電特性に於ける品質係数Qからのドメインスイッチング(誘電体(リラクサー),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 21aXA-2 Bi_4Ti_3O_の分極反転II(誘電体(ペロブスカイト),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- 23pZD-5 Bi_4Ti_3O_の分極反転(23pZD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 28aXD-8 PZN-PT混晶の誘電異方性(28aXD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 20pYM-9 電場下におけるPZNの誘電特性(誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 27aYR-5 PZN-xPT系リラクサー強誘電体における極性ナノ領域ダイナミクス(誘電体,領域10(誘電体, 格子欠陥, X線・粒子線, フォノン物性))
- 13pTL-1 PZN/xPT 系リラクサー強誘電体の光散乱(誘電体, 領域 10)
- 23pZD-6 Bi_La_xTi_3O_の相図(23pZD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 24aPS-134 ポーリングしたBaTiO_3単結晶の誘電異方性(24aPS 領域10ポスターセッション,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 23pWY-11 リラクサ強誘電体固溶体NBTBTでのドメイン構造と誘電特性(23pWY マルチフェロイック・リラクサー,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 24aPS-133 Pb(Zn_Nb_)O_3-PbTiO_3の電場誘起菱面体-正方晶相転移(24aPS 領域10ポスターセッション,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 24aPS-132 Pb(Zn_Nb_)O_3-PbTiO_3混晶の電場誘起臨界点(24aPS 領域10ポスターセッション,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- Divalent State in YbGaGe : Magnetic, Thermal, Transport and Structural Studies(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Divalent State in YbGaGe : Magnetic, Thermal, Transport and Structural Studies
- 27aYR-6 PZN-PT混晶のラマン散乱(誘電体,領域10(誘電体, 格子欠陥, X線・粒子線, フォノン物性))
- 28aXD-9 リラクサ強誘電体固溶体PZNT,PMNTの圧電特性への圧力効果(28aXD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- Pressure Dependence of Piezoelectric Properties of Pb(Zn_Nb_)O_3-PbTiO_3 Binary System Single Crystal near a Morphotropic Phase Boundary
- High-Critical-Current-Density Epitaxial Films of SmBa_2Cu_3O_ in High Fields
- Reduction of Surface Resistance of ErBa_2Cu_3O_ Films by BaZrO_3 Nano-Particle Inclusion
- Correlation between Film Thickness and Critical Current Density of Sm_Ba_Cu_3O_ Films Deposited by Pulsed Laser Deposition : Superconductors
- Dielectric Dispersion of Pyridinium Tetrafluoroborate Single Crystals(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- 26aWY-3 (Ba,Ca)TiO_3混晶の相図へのコメント(26aWY 領域10,領域8,領域7,領域3合同シンポジウム:誘電体に潜む新しい秩序-最近の話題-,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 26aWY-3 (Ba,Ca)TiO_3混晶の相図へのコメント(26aWY 領域10,領域8,領域7,領域3合同シンポジウム:誘電体に潜む新しい秩序-最近の話題-,領域8(強相関系:高温超伝導,強相関f電子系など))
- 24pYE-8 原子間力顕微鏡・静電気力顕微鏡でみる分域像(強誘電体分域の測定法の新展開と新しい分域像,シンポジウム,領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 領域10「強誘電体薄膜および界面における新しい現象とその応用」(2005年秋季大会シンポジウムの報告)
- 20pYM-6 Bi_4Ti_3O_の相転移(誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 25pWY-9 Bi_La_xTi_3O_(BLT)混晶における光誘起現象(25pWY 薄膜・酸化物系,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 25pTM-1 Pb(Zn_Nb_)O_3-PbTiO_3の臨界点近傍のPNR(25pTM リラクサー,酸化物系,ペロブスカイト,領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- リラクサー強誘電体Pb(Zn1/3Nb2/3)O3-xPbTiO3混晶系の光散乱と誘電特性
- 誘電的性質強誘電性セラミックスの相転移
- 27pTM-6 Bi_Sm_xTi_3O_(BSmT)の構造相転移と光散乱(27pTM 酸化物系,光散乱,領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- Thermal Excitation in the Haldane-Gap System (CH_3)_4NNi (NO_2)_3
- 23aPS-126 Pb(Zn_Nb_)O_3-9%PbTiO_3混晶の温度-電場相図(23aPS 領域10ポスターセッション,領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- 21pGN-8 Bi層状構造強誘電体の構造相転移と光散乱(21pGN リラクサー・光散乱,領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- 21pGN-4 リラクサ強誘電体単結晶のミクロンからナノスケールでのドメイン構造(21pGN リラクサー・光散乱,領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- 21pGN-1 Pb(Zn_Nb_)O_3-PbTiO_3混晶の相図(21pGN リラクサー・光散乱,領域10(誘電体,格子欠陥,X線・粒子線,フォノン))