Watanabe Yoshihide | Department Of Electronics Faculty Of Engineering Tottori University
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概要
関連著者
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Watanabe Yoshihide
Department Of Electronics Faculty Of Engineering Tottori University
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渡部 行男
九大院理
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渡部 行男
九州工業大学工学部電気工学科
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Watanabe Y
Kyushu Univ. Fukuoka Jpn
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Watanabe Yoshihide
Toyota Central Research And Development Laboratories Inc.
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渡部 行男
九大理院
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渡辺 芳夫
Department Of Pediatric Surgery Nagoya University Graduate School Of Medicine
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渡辺 征夫
九大工
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Watanabe Yukio
Mitsubishi Chemical Yokohama Research Center
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Watanabe Yasutaka
Faculty Of Science Kwansei Gakuin University
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加来 滋
学振
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浦上 洋輔
九大院理
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加来 滋
九大院理
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Shiratani M
Department Of Electronics Graduate School Of Information Science And Electrical Engineering Kyushu U
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Shiratani Masaharu
Department Of Electoronics Kyushu University
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Watanabe Yukio
Department Of Electrical Engineering Faculty Of Engineering Kyushu University
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倭 瑞貴
九大理
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松元 大輔
九大院理:学振
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宮内 聡
九大院理
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松元 大輔
九大院理
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倭 瑞貴
九大院理
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岡野 資睦
九工大工
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渡部 行男
九工大工
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Fukuzawa Tsuyoshi
Department Of Electronic Device Engineering Graduate School Of Information Science And Electrical En
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中原 大志
九大理
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渡辺 征夫
九州大学
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吉岡 浩孝
九大理院
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根本 達也
九大院理
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WATANABE Yukio
Department of Human Genetics, Nagasaki University Graduate School of Biomedical Sciences
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水口 拓也
九大院理
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Koga Kenji
National Institute For Advanced Interdisciplinary Research
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KISHIDA Satoru
Department of Electronics, Faculty of Engineering, Tottori University
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TOKUTAKA Heizo
Department of Electronics, Faculty of Engineering, Tottori University
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NISHIMORI Katsumi
Department of Electronics, Faculty of Engineering, Tottori University
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ISHIHARA Naganori
Department of Electronics, Faculty of Engineering, Tottori University
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Kishida S
Opto-electronics Research Laboratories Nec Corporation
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SHIRATANI Masaharu
Department of Electrical Engineering, Faculty of Engineering, Kyushu University
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Ishihara N
Department Of Electrical And Electronic Engineering Faculty Of Engineering Tottori University
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Ishihara Naganori
Department Of Electronics Faculty Of Engineering Tottori University
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Kishida Satoru
Department Of Electrical And Electronic Engineering Faculty Of Engineering Tottori University
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Tokutaka H
Tottori Univ. Tottori Jpn
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Tokutaka Heizo
Som Japan Inc.
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Tokutaka Heizo
Department Of Electrical And Electronic Engineering Faculty Of Engineering Tottori University
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Nishimori K
Tottori Univ. Tottori Jpn
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MAEDA Fumihiko
NTT Basic Research Laboratories
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WATANABE Yoshio
NTT Basic Research Laboratories
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KOGA Kazunori
Department of Advanced Energy Engineering Sciences, Interdisciplinary Graduate School of Engineering
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Watanabe Yukio
Department Of Electrical Engineering Sciences Faculty Of Engineering Sciences Kyushu University
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Koga K
Department Of Electronics Graduate School Of Information Science And Electrical Engineering Kyushu U
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Koga Kazunori
Department Of Advanced Energy Engineering Sciences Interdisciplinary Graduate School Of Engineering
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Maeda F
Ntt Basic Research Laboratories
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Ishihara Naganori
Department Of Electrical And Electronic Engineering Faculty Of Engineering Tottori University
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小倉 俊助
九大院理
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Nath Krishna
Ntt Basic Research Laboratories
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中原 大志
九大院理
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NOISHIKI Yoshio
Department of Electronics, Faculty of Engineering, Tottori University
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Noishiki Yoshio
Department Of Electronics Faculty Of Engineering Tottori University
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Sakamoto K
Tohoku Univ. Miyagi Jpn
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Sakamoto Kunihiro
Electrotechnical Laboratory (etl)
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Nagai K
Olympus Optical Co. Ltd.
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Maeda S
Department Of Electronic Device Engineering Graduate School Of Information Science And Electrical En
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Maeda Shinichi
Department Of Electrical And Electronic Engineering Faculty Of Engineering Muroron Institute Of Tech
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Sakamoto Kenji
Institute Of Fluid Science Tohoku University
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Kawasaki Hiroharu
Department Of Electrical Engineering Sasebo National College Of Technology
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渡部 行男
九工大工電気工学科
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Suzuki S
National Inst. Of Advanced Industrial Sci. And Tech Tsukuba Jpn
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Suzuki Satoru
Ntt Basic Research Laboratories Ntt Corporation And Crest Jst
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中村 昂史
九大院理
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中村 昂史
九大理
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山田 和正
九大院理
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山田 和正
九大理
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倉岡 稔
九大院理
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渡部 行男
九州工業大学 工学部
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Gerber Ch.
Ibm Zurich研
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Gerber Ch.
Ibm Zurich.
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SUZUKI Satoru
NTT Basic Research Laboratories, NTT Corporation
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桝田 彰洋
九工大工電気工学科
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加来 滋
九大理
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KIYOKURA Takanori
NTT Basic Research Laboratories
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Ikeda Shingo
Asm Japan K.k.
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浦上 洋輔
九大理院
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FUKUZAWA Tsuyoshi
Department of Electronic Device Engineering, Graduate School of Information Science and Electrical E
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吉岡 浩孝
九大院理
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白谷 正治
九州大学大学院システム情報科学研究院
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古閑 一憲
九州大学大学院システム情報科学研究院
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松下 泰之
九工大工
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杉島 正樹
九大院理
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杉島 正樹
九大理
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渡辺 征夫
九州大学大学院システム情報電子デバイス専攻
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Horikawa Yoshiaki
Olympus Optical Co. Ltd.
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布村 正太
産総研
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KAWAI Tomoji
The Institute of Scientific and Industrial Research, Osaka University
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SEO TAKAHIKO
Department of Pediatric Surgery, Nagoya University School of Medicine
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ANDO HISAMI
Department of Pediatric Surgery, Nagoya University School of Medicine
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KANEKO Kenichiro
Department of Pediatric Surgery, Nagoya University School of Medicine
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白谷 正治
九大
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Bednorz J.
Ibm Zurich.
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KATSUNO Shinsuke
Department of Pediatric Surgery, Nagoya University Graduate School of Medicine
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WATANABE Yoshio
Department of Pediatric Surgery, Nagoya University Graduate School of Medicine
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HARADA Toru
Department of Pediatric Surgery, Nagoya University Graduate School of Medicine
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水口 拓也
九大理
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倉岡 稔
九大理
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Kaku S.
Kyushu Univ.
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NAKANISHI Shigemitsu
Department of Materials Science, University of Osaka Prefecture
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岡野 資睦
九州工業大学 工学部
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松下 泰之
九州工業大学 工学部
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Takeda Shin
Department Of Surgery Ii Nagoya University Graduate School Of Medicine
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NAKANISHI Shuuichi
Department of Electronics, Faculty of Engineering, Tottori University
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FUJIMOTO Hiroshi
Department of Electronics, Faculty of Engineering, Tottori University
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FUTO Wataru
Department of Electronics, Faculty of Engineering, Tottori University
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TORIGOE Seiji
Department of Electronics, Faculty of Engineering, Tottori University
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HARADA Hisamochi
Department of Electronics, Faculty of Engineering, Tottori University
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YAMAMOTO Takayuki
Department of Electronics, Faculty of Engineering, Tottori University
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鈴木 孝将
九大理院
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吉岡 孝浩
九大理院
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山縣 英雄
九工大工
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トーマス G
ベル研
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チョン S.W.
ベル研
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澤村 大介
九工大工 電気工学科
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岡野 資睦
九工大工 電気工学科
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渡部 行男
九工大工 電気工学科
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OSHIMA Masaharu
Department of Engineering, University of Tokyo
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WATANABE Yukio
Kyushu Institute of Technology
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Kakizaki A
Photon Factory Institute Of Material Structure Science High Energy Accelerator Research Organization
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Kawai Tomoji
The Institute Of Science And Industrial Research (isir-sanken) Osaka University
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Oshima M
Department Of Applied Chemistry The University Of Tokyo
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Oshima M
Univ. Tokyo Tokyo
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Oshima M
Department Of Engineering The University Of Tokyo
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古閑 一憲
九州大学
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Saitoh Tomohiko
Photon Factory Institute Of Material Structure Science High Energy Accelerator Research Organization
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IKETAKI Yoshinori
NTT Advanced Technology Corporation
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枡田 彰洋
九州工業大学 工学部
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松元 大輔
九大理
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Kaneko Kenitiro
Department Of Pediatric Surgery Nagoya University Graduate School Of Medicine
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Bietsch A.
IBM Zurich.
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Beck A.
IBM Zurich.
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NATH Krisha
NTT Basic Research Laboratories
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KAKIZAKI Akito
Photon Factory, Institute of Material Structure Science, High Energy Accelerator Research Organizati
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Katsuno Shinsuke
Department Of Pediatric Surgery Nagoya University Graduate School Of Medicine
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Iketaki Yoshinori
Presto "light And Material" Japan Science And Technology Agency
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Iketaki Yoshinori
Olympus Optical Co. Ltd.
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Iketaki Yoshinori
Advanced Technology Research Center Olympus Optical Co. Ltd.
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Fujimoto H
Daido Inst. Technol. Nagoya Jpn
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Jin Hong
Department Of Electrical And Electronic Engineering Yonsei University
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Jin Hong
Dept.of Electronic Device Eng. Grad.school Of Information Science And Electrical Eng. Kyushu Univ.
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Futo Wataru
Department Of Electrical And Electronic Engineering Tottori University
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Ando H
Department Of Pediatric Surgery Nagoya University Graduate School Of Medicine
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Harada Toru
Department Of Pathology Jikei University School Of Medicine
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Harada Toru
Department Of Pediatric Surgery Nagoya University Graduate School Of Medicine
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Seo Takahiko
Department Of Surgery Ii Nagoya University Graduate School Of Medicine
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Torigoe Seiji
Department Of Electronics Faculty Of Engineering Tottori University
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Matsuki Nobuo
Asm Japan K.k.
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Ohno T
National Research Institute For Metals
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Ohno Takahisa
National Institute For Materials Science
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Ohno Takahisa
Computational Materials Science Center National Institute For Materials Science
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Ohno Takahisa
National Research Institute For Metals
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Kakizaki Akito
Photon Factory Institute Of Material Structure Science High Energy Accelerator Research Organization
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YUMOTO Takashi
Department of Electrical and Electronic Engineering, Faculty of Engineering, Tottori University
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Inoue Toshihisa
Department of Cardiology, Chiba Cardiovascular Center
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Nakanishi S
Univ. Tokyo Jpn
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TOYOFUKU Masaharu
Department of Electrical Engineering, Fukuoka Institute of Technology
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Kim Kyo-seon
Department Of Chemical Engineering Kangwon National University
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Seo Takahiko
Department Of Pediatric Surgery Nagoya University Graduate School Of Medicine
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Kinoshita T
Kyushu Univ. Fukuoka Jpn
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浦上 洋輔
九大理
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倭 瑞貴
九大理院
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NAGAI Koumei
Olympus Optical Co., Ltd.
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SHIGEMASA Eiji
High Energy Accelerator Research Organization
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YAGISHITA Akira
High Energy Accelerator Research Organization
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Kim K‐s
Department Of Chemical Engineering Kangwon National University
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白谷 正治
九州大学
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内田 儀一郎
九州大学
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布村 正太
産業技術総合研究所
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Inoue Toshihisa
Department Of Cardiology Chiba Cardiovascular Center
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Inoue Toshihisa
Department Of Electoronics Kyushu University
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Kaneko Kenichiro
Department Of Pediatric Surgery Nagoya University School Of Medicine
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Horikawa Y
Olympus Optical Co. Ltd.
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NUNOMURA Shota
Department of Physics and Astronomy, The University of Iowa
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今村 明将
九大院理
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宮内 聡
九大理
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宮内 聡
九大理院
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Nunomura Shota
Department Of Electronics Graduate School Of Information Science And Electrical Engineering Kyushu U
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MORISADA Yoshinori
ASM Japan K.K.
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BANDO Kouki
Department of Electoronics, Kyushu University
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IWASHITA Shinya
Department of Electoronics, Kyushu University
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KAI Motohide
Department of Electronics, Graduate School of Information Science and Electrical Engineering, Kyushu
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SHIKATANI Nobuhiro
Department of Functional Materials, Fukuoka Institute of Technology
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Oshima Masaharu
Department Of Applied Chemistry Graduate School Of Engineering The University Of Tokyo
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Ohno Takahisa
First Principles Simulation Group Computational Materials Science Center National Institute For Mate
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Ando Hisami
Department Of Pediatric Surgery Nagoya University
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小林 竜馬
九大院理
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Nakatake Yasuhiro
Department of Electronic Device Engineering, Graduate School of Information Science and Electrical E
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Kinoshita Toshio
Department of Electronic Device Engineering, Graduate School of Information Science and Electrical E
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Matsuoka Yasuhiko
Department of Electronic Device Engineering, Graduate School of Information Science and Electrical E
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Harada Hisamochi
Department Of Electronics Faculty Of Engineering Tottori University
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Yamamoto T
Department Of Applied Chemistry Faculty Of Science And Engineering Kinki University
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Iketaki Y
Presto "light And Material" Japan Science And Technology Agency
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Toyofuku Masaharu
Department Of Electrical Engineering Fukuoka Institute Of Technology
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Toyofuku Masaharu
Department Of Electrical And Electronic Engineering Saga University
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Yumoto Takashi
Department Of Electrical And Electronic Engineering Faculty Of Engineering Tottori University
著作論文
- 23pHS-7 超高真空原子間力顕微鏡によるTSSG BaTiO_3結晶の分域観察(23pHS 誘電体(マルチフェロイック・ドメイン),領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- 23pHS-6 強誘電体の伝導ピーク現象と分域のその場観察(23pHS 誘電体(マルチフェロイック・ドメイン),領域10(誘電体,格子欠陥,X線・粒子線,フォノン))
- 25aZD-4 BaTiO_3単結晶のn型及びp型表面伝導の検討(25aZD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- Hypogenesis of intramural vascularity and perivascular plexuses of gallbladder in patients with congenital biliary dilatation
- 27aYJ-3 バルク起源の一方向性電気伝導 : 一般の捕獲準位とBiFeO_3実験との比較(誘電体(理論・SrTiO_3),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 26aYJ-7 AFM測定方法の違いによる強誘電体の表面構造の比較(誘電体(酸化物),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 25pYJ-4 原子レベルで制御された強誘電体表面(強誘電体格子系の精密制御法と新物性,領域10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)
- 25aYJ-1 原子間力顕微鏡と圧電応答顕微鏡による原子ステップと分域の観察-2(誘電体(BaTiO_3関連),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 29pRF-9 原子レベルに表面を制御したチタン酸バリウム単結晶の表面伝導(29pRF 誘電体(BaTiO_3系),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 29pRF-8 超高真空原子間力顕微鏡によるBaTiO_3分域の表面電位変化の観察(29pRF 誘電体(BaTiO_3系),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 29pRF-7 原子間力顕微鏡と圧電応答顕微鏡による原子ステップと分域の観察(29pRF 誘電体(BaTiO_3系),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 22pVE-3 超高真空原子間力顕微鏡によるBaTiO_3分域の変化の観察(22pVE 誘電体(ペロフスカイト),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 22aVE-5 絶縁体における非表面起源のダイオード的電流電圧特性 : 実験との比較(22aVE 誘電体(輸送現象),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 22aVE-4 絶縁体における非表面起源のダイオード的電流電圧特性 : 背景と定式化(22aVE 誘電体(輸送現象),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 22aVE-3 BaTiO_3単結晶の表面伝導層の安定性(22aVE 誘電体(輸送現象),領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 領域10「強誘電体分域の測定法の新展開と新しい分域像」(第63回年次大会シンポジウムの報告)
- 26aYE-8 BaTiO_3単結晶の伝導異常と構造との関係(誘電体(BaTiO_3関連),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 26aYE-9 超高真空原子間力顕微鏡(UHV-AFM)による清浄化BaTiO_3表面の観察(誘電体(BaTiO_3関連),領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- 24aYE-7 強誘電体180°分域理論の整合性の検討(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)
- 24pYE-1 はじめに(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)
- 20aXA-7 n,ρ型BaTiO_3単結晶のσ-T、σ-t特性(誘電体(BaTiO_3系),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- 20aXA-8 大気AFM, UHV-AFMによるBaTiO_3の分域の比較(誘電体(BaTiO_3系),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- 29a-Q-1 Pb(Ti, Zr)O_3強誘電体界面の輸送特性の分極依存性
- XPS Studies of Bi-Sr-Ca-Cu-O Single Crystal and Ceramics Surfaces
- Surface Analysis of YBa_2Cu_3O_x and Bi-Sr-Ca-Cu-O Superconductors by Auger Electron Spectroscopy
- Effects of Water on the Resistance-Temperature Characteristics of YBa_2Cu_3O_ Oxides : Electrical Properties of Condensed Matter
- Effects of Preparation conditions and Mechanical Polishing on the Superconducting Behavior of High-T_c Oxide Y_1Ba_2Cu_3O_
- 29aXJ-3 エピタキシャル BaTiO_3 薄膜の電流の温度異常と表面相転移
- 28pYR-2 Pb(Zr,Ti)O_3界面における光電流応答
- 23pYQ-5 分極制御した清浄なBaTiO_3自由表面上の電気伝導 : 強誘電体表面電子相の可能性 (初期検討)
- 25pYJ-12 BaTiO_3金属絶縁体転移組成の広域分光測定 : 強誘電性への酸素欠陥効果
- 30p-YD-1 BaTiO_3エピタキシャル膜のnmスケールショットキー特性
- 21aXA-14 PTCR効果の電圧依存性(誘電体(マルチフェロイック関連),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- 25aWY-5 反電界に対する正しい誘電率(25aWY 酸化物系,領域10(誘電体格子欠陥,X線・粒子線フォノン))
- 会議だより 第11回強誘電体国際会議(IMF-11)
- 20aXA-1 強誘電体Pb_La_xZr_Ti_yO_3薄膜の輸送特性の温度依存性(誘電体,領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- 20aYM-3 格子不整合BaTiO_3薄膜のPTCR的非線型伝導異常(誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 18aWE-8 SrTiO_3単結晶の可逆的電流誘起金属-絶縁体転移
- Epitaxy, Modification of Electronic Structures, Overlayer-Substrate Reaction and Segregation in Ferromagnetic Co Films on Se-Treated GaAs(001) Surface
- Resonant Photoemission Spectroscopy of Ga 3d Two-Hole State of GaAs : Condensed Matter: Electronic Properties, etc.
- 4.プロセスプラズマ中の微粒子の凝集と輸送(「プラズマと微粒子」研究の諸分野における進展)
- 27pYA-1 SrTiO_3,LaGaO_3の電気伝導(27pYA 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 27pYA-2 BaTiO_3単結晶表面伝導の酸素抜け効果の検討(27pYA 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 27pYA-3 BaTiO_3と(Pb(Zn_Nb_)O_3)_(PbTiO_3)_の相転移における伝導率ピークのIt特性による検討(27pYA 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 20aYM-2 BaTiO_3単結晶の伝導異常への電極及び不純物効果(誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 20aYM-1 分極処理によるBaTiO_3単結晶の伝導率の変化(誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 25pYR-10 BaTiO_3TSSG単結晶の伝導異常の広域温度特性(誘電体,領域10(誘電体, 格子欠陥, X線・粒子線, フォノン物性))
- 25pYR-8 BaTiO_3単結晶の相転移での伝導異常のI-t測定からの解析(誘電体,領域10(誘電体, 格子欠陥, X線・粒子線, フォノン物性))
- Throughput Measurement of a Multilayer-Coated Schwarzschild Objective Using Synchrotron Radiation
- 25aZD-6 原子間力顕微鏡と構造解析によるBaTiO_3薄膜の伝導異常の解析(25aZD 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 25pYR-9 BaTiO_3格子不整合エピ薄膜の伝導異常の熱処理分極処理依存性(誘電体,領域10(誘電体, 格子欠陥, X線・粒子線, フォノン物性))
- 29pXK-7 格子不整合なBaTiO_3エピタキシャル膜の伝導の温度依存性(誘電体)(領域10)
- Fabrication of Nanoparticle Composite Porous Films Having Ultralow Dielectric Constant
- Highly Stable a-Si:H Films Deposited by Using Multi-Hollow Plasma Chemical Vapor Deposition
- Cluster-Suppressed Plasma Chemical Vapor Deposition Method for High Quality Hydrogenated Amorphous Silicon Films
- Effects of Gas Temperature Gradient, Pulse Discharge Modulation, and Hydrogen Dilution on Particle Growth in Silane RF Discharges
- 20pXA-11 強誘電体表面の本質的自由電子ホール層(招待講演,誘電体(BaTiO_3系・SrTiO_3系),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- 領域10,5,8,3「誘電体の電子ダイナミクス」(第61回年次大会シンポジウムの報告)
- 29pYA-1 はじめに(29pYA 領域10,領域5,領域8,領域3合同シンポジウム:誘電体の電子ダイナミクス,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 27pYA-4 BaTiO_3エピタキシャル薄膜の伝導異常の実験的解析(27pYA 誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 29pYA-1 はじめに(29pYA 領域10,領域5,領域8,領域3合同シンポジウム:誘電体の電子ダイナミクス,領域8(強相関系:高温超伝導,強相関f電子系など))
- 21pYN-6 強誘電体薄膜における界面の効果(領域10シンポジウム : 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,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 20aYM-4 自由電荷を考慮した強誘電体の電界効果の巨視的理論(誘電体,領域10(誘電体,格子欠陥,X線・粒子線,フォノン物性))
- 23aX-6 強誘電体自由表面及び微小体の表面格子緩和と量子閉じ込め効果を考慮した安定
- 23aX-5 強誘電体自由表面及び微小体の多分域とフェルミ分布を考慮した安定性
- Conformal Deposition of High-Purity Copper Using Plasma Reactor with H Atom Source
- Effects of Gas Flow on Particle Growth in Silane RF Discharges
- 29a-Q-2 強誘電体自由表面の二次元電子系と強誘電体安定性
- 13pTL-12 高純度 BaTiO_3 単結晶の相転移での伝導異常(誘電体, 領域 10)
- 29pXK-6 as-grown絶縁性BaTiO_3単結晶中伝導の異常の諸特性との相関(誘電体)(領域10)
- 29pXK-5 BaTiO_3単結晶の電極下の分域構造と伝導特性の解析法(誘電体)(領域10)
- Study on Initial Growth of Particles in Low-Pressure and Low-Power GeH_4 RF Discharges Using the High-Sensitivity Photon-Counting Laser-Light-Scattering Method
- Transition of Particle Growth Region in SiH_4 RF Discharges
- Similarities in Spatial Distributions of Absolute GeH_2 Density, Radical Production Rate and Particle Amount in GeH_4 RF Discharges
- Particle Growth Kinetics in Silane RF Discharges
- Work Function Changes of GaAs Surfaces Induced by Se treatment
- 29pXK-4 強誘電体表面の電子系状態における∇P効果(誘電体)(領域10)
- 22pXA-8 BaTiO_3 単結晶の極微小伝導度の温度依存性
- 21pXC-4 As-grown BaTiO_3 単結晶表面の原子ステップ観察
- 解説 ナノ強誘電体のサイズ効果とは何か?--極微小化から見る強誘電性基礎
- 領域8,10「遷移金属酸化物・強誘電体ナノ構造のサイズ効果とは何か?」(2001年秋季大会シンポジウム(物性分科会)の報告)
- 18pWE-6 表面から見る強誘電体薄膜物性の規定と新物性
- 18pWE-6 表面から見る強誘電体薄膜物性の規定と新物性
- 24pX-3 微小強誘電体の応用における原理的問題と現状
- Low Temperature Growth of Epitaxial (Ba, Sr)TiO_3 Thin Film by Sputter Molecular Beam Epitaxy Method
- 強誘電体薄膜の集積メモリ-応用とその物理的基礎に向けて
- Eigenvalue Problem in Min-Plus Algebra
- Universal Grobner basis associated with the maximum flow problem