UMENO Masayoshi | Department of electrical and Computer Engineering, Nagoya Institute of Technology
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概要
関連著者
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UMENO Masayoshi
Department of electrical and Computer Engineering, Nagoya Institute of Technology
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Umeno Masayoshi
Department Of Electric And Computer Engineering Nagoya Institute Of Technology
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Umeno M
Fukui Univ. Technol. Fukui Jpn
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Umeno M
Department Of Electronic Engineering Chubu University
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Umeno Masataka
Department Of Material And Life Science Graduate School Of Engineering Osaka University
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Soga T
Nagoya Inst. Technol. Nagoya Jpn
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JIMBO Takashi
Department of Environmental Technology & Urban Planning, Nagoya Institute of Technology
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Jimbo Takashi
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Soga T
Department Of Environment Technology And Urban Planning Nagoya Institute Of Technology
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Soga Tetsuo
Department Of Electronics Faculty Of Engineering Nagoya University
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SOGA Tetsuo
Department of Frontier Materials, Nagoya Institute of Technology
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JIMBO Takashi
Research Center for Micro-Structure Device, Nagoya Institute of Technology
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Umeno Masayoshi
Department Of Electronic Mechanical Engineering Nagoya University
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SAKAI Shiro
Department of Electrical and Electronic Engineering, University of Tokushima
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Umeno Masataka
Graduate School Of Engineering Osaka University
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EGAWA Takashi
Research center for Nano-Device and System, Nagoya Institute of Technology
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Umeno Masayoshi
Department Of Electronic And Computer Engineering Nagoya Institute Of Technology
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Egawa Takashi
Research Center For Nano-device And System Nagoya Institute Of Technology
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Sakai Shiro
Department Of Electrical And Electronic Engineering The University Of Tokushima
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Sakai S
Department Of Electric And Computer Engineering Nagoya Institute Of Technology
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Sakai S
Department Of Electrical And Electronic Engineering The University Of Tokushinna
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Jimbo T
Department Of Environment Technology And Urban Planning Nagoya Institute Of Technology
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Sakai Shiro
Graduate School Of Engineering The University Of Tokushima
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Sakai S
Faculty Of Education Shinshu University:(present Address)department Of Materials Science And Chemica
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Sakai S
Tokushima Univ. Tokushima Jpn
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SOGA Tetsuo
Instrument and Analysis Center, Nagoya Institute of Technology
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Ishikawa H
Research Center For Nano-device And System Nagoya Institute Of Technology
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Soga Tetsuo
Instrument And Analysis Center Nagoya Institute Of Technology
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Umeno Masayoshi
Department Of Electronic Engineering Chubu University
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Sakai S
Electrotechnical Lab. Ibaraki Jpn
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HATTORI Shuzo
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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Nishikawa H
Osaka Univ. Osaka Jpn
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Sakai S
Electrotechnical Lab. Ibaraki
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Jimbo T
Research Center For Nano-device And System Nagoya Institute Of Technology
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Umeno Masayoshi
Department Of Engineering Science Nagoya Institute Of Technology
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ISHIKAWA Hiroyasu
Research Center for Nano-Device and System, Nagaya Institute of Technology
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Fujii Syuitsu
Adtec Co. Ltd.
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Fujii Sadao
Central Research Laboratory Kanegafuchi Chemical Industry Co.
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Zhao Guang-yuan
Research Center For Micro-structure Devices Nagoya Institute Of Technology
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Fujii S
Matsushita Electronics Corp. Kyoto Jpn
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Ishikawa Hiroyasu
Research And Development Laboratories Kokusai Denshin Denwa Co. Ltd.
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Hayashi Y
Hadepartment Of Environmental Technology And Urban Planning Nagoya Institute Of Technology
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WANG Gang
Department of Dermatology of Xijing Hospital, Fourth Military Medical University
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Jimbo Takashi
Research Center For Micro-structure Devices Nagoya Institute Of Technology
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Wang Gang
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Wang Gang
Beijing Astronomical Observatory Chinese Academy Of Sciences
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Wang Gang
Changchun Institute Of Optics Fine Mechanics And Physics Chinese Academy Of Sciences.
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Wang Gang
Faculty Of Agriculture Shizuoka University
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Hayashi Yasuhiko
Department Of Cardiovascular Physiology And Medicine Hiroshima University Graduate School Of Biomedi
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EGAWA Takashi
Department of Neuropharmacology, Faculty of Pharmaceutical Sciences, Fukuoka University
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Jimbo Takashi
Department Of Environmental Technology And Urban Planning Nagoya Institute Of Technology:research Ce
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FUJII Sadao
Department of Electric and Computer Engineering, Nagoya Institute of Technology
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AMEMIYA Yoshifumi
Department of Electronics, Faculty of Engineering, Nagoya University
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HATTORI Hajime
Department of Electronic Engineering, Nagoya University
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YANG Mingju
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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Egawa Takashi
Department Of Neuropharmacology Faculty Of Pharmaceutical Sciences Fukuoka University
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Yang M
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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YU Guolin
Nagoya Institute of Technology
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Takahashi Yoshihiro
Department Of Applied Physics School Of Engineering Tohoku University
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NAKAMURA Kouichi
Department of Morphological Brain Science, Graduate School of Medicine, Kyoto University
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Umeno Masayoshi
Department Of Electronic Engineering Nagoya University
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SHAO Chun-Lin
Training Group of the Association for Overseas Technical Scholarship
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TOBE Miharu
Department of Electronics, Faculty of Engineering, Nagoya University
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Ishikawa Hiroyasu
Department of Internal Medicine, Anjo Kosei Hospital
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WAKITA Koichi
Department of Electronic Engineering, Faculty of Engineering, Nagoya University
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MIKI Shichiro
Department of Electronics, Nagoya University
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Takahashi Y
Tanaka Solid Junction Project Erato Japan Science And Research Corporation
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Nakamura K
Department Of Electrical Engineering School Of Engineering Nagoya University
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TAKEYASU Masanari
Department of Electronic and Computer Engineering, Nagoya Institute of Technology
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Takahashi Yasuhito
Department of Electronics, Faculty of Engineering, Nagoya University
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ARIZUMI Tetsuya
Department of Electronic Engineering, Faculty of Engineering, Nagoya University
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Tobe Miharu
Department Of Engineering Science Nagoya Institute Of Technology:(present Address) Musashino Electri
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NISHIKAWA Hironobu
Department of Physics, Nagoya Institute of Technology
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OGAWA Akira
Department of Neurosurgery, Iwate Medical University School of Medicine
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SHIRAISHI Hiroyuki
Department of Mechanical Engineering, Daido Institute of Technology
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ISHIBASHI Yoshihiro
Synthetic Crystal Research Laboratory, Faculty of Engineering, Nagoya University
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Kazi Zaman
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Ishibashi Yoshihiro
Synthetic Crystal Research Laboratory Faculty Of Engineering Nagoya University
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Rusop M
Nagoya Inst. Technol. Nagoya Jpn
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Rusop Mohamad
Department Of Environment Technology And Urban Planning Nagoya Institute Of Technology
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EBISU Hiroshi
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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KOBAYASHI Yasufumi
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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Ebisu H
Department Of Physics Nagoya Institute Of Technology
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Ebisu Hiroshi
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Ogawa Takashi
Departments Of Cardiology Tokyo Medical University
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Umeno Masayoshi
Department Of Electronics Nagoya University
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Umeno Masayoshi
Department Of Electronic Engineering Faculty Of Engineering Nagoya University
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SHAO Chun-Lin
Department of Electronics
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Ohtsuka K
Sanken Electric Co. Ltd. Niiza Jpn
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Ogawa Tohru
Technology Strategy Development Sony Co. Core Technology & Network Company
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HAO Maosheng
Department of Electrical and Electronic Engineering, The University of Tokushima
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Tian Xuemm
Department Of Environmental Technology And Urban Planning Nagoya Institute Of Technology
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FUJII Sadao
Central Research Laboratory, Kanegafuchi Chemical Industry Co.
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FURUTA Shigeru
Department of Electric and Computer Engineering, Nagoya Institute of Technology
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AOKI Takahiro
Department of Electronics, Faculty of Engineering, Nagoya University
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NAKADA Naoyuki
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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Nakada N
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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SHIMIZU Hiroyasu
Department of Electronic Engineering, Faculty of Engineering, Nagoya University
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FUJITANI Osamu
Department of Electronic Engineering, Nagoya University
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Kobayashi Yasufumi
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Hao Maosheng
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Nakamura K
Tokyo Electron Ltd. Tokyo Jpn
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Horiba Yasutaka
Department Of Electronics Nagoya University
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Horiba Yasutaka
Department Of Electrical Engineering Faculty Of Engineering Kansai University
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Ishibashi Yoshihiro
Synthetic Crystal Research Laboratory
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Aoki Takahiro
Department Of Engineering Science Nagoya Institute Of Technology:(present Address) Musashino Electri
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Fujii Sadao
Central Research Laboratories Kaneka Corporation
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Shao Chun
Research Center For Nano-device And System Nagoya Institute Of Technology
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Ogawa A
Shizuoka Univ. Shizuoka‐shi Jpn
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Ishikawa H
Kddi R&d Laboratories Inc.
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Shao C
Research Center For Nano-device And System Nagoya Institute Of Technology
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Tian Xuemin
Department Of Environmental Technology And Urban Planning Nagoya Institute Of Technology
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FUKUI Masuo
Department of Optical Science and Technology, Faculty of Engineering, The University of Tokushima
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YUASA Takayuki
Department of Physics, School of Science, The University of Tokyo
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Saka Takashi
Electrical And Electronics Engineering Daido Institute Of Technology
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Saka Takashi
New Materials Research Laboratory Daido Steel Co. Ltd.
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WADA Takashi
Department of Gastroenterology and Nephrology, Kanazawa University Graduate School of Medical Scienc
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Yonehara Takao
Eltran Project R&d Headquarters Canon Inc.
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Shima Akihiro
Department Of Molecular Biology Keio University School Of Medicine
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Miyoshi Makoto
Corporate R&d Ngk Insulators Ltd.
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Mosaddeq-ur-RAHMAN Md.
Department of electrical and Computer Engineering, Nagoya Institute of Technology
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Uesugi Tsutomu
Department Of Electronics Faculty Of Engineering Nagoya Institute Of Technology
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TIAN Xuemm
Department of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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HAYASHI Yasuhiko
HADepartment of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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HAGIMOTO Kouji
Department of Environmental and Urban Planning, Nagoya Institute of Technology
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KALAGA Murali
Research Center for Micro-Structure Devices, Nagoya Institute of Technology
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WATANABE Keisuke
Department of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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AGATA Yasunori
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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SATO Nobuhiko
ELTRAN Project, R&D Headquarters, Canon Inc.
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Jimbo Takashi
Department Of Electronics Nagoya University
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Agata Y
Nagoya Inst. Technol. Nagoya Jpn
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Agata Yasunori
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Hagimoto K
Department Of Environmental And Urban Planning Nagoya Institute Of Technology
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ZHANG Baijun
Research Center for Nano-Device and System, Nagoya Institute of Technology
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George Thomas
Departments Of Chemistry And Physics Washington State University Pullman
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George Thomas
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology:jet Propulsion Labo
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Shima Akihiro
Department Of Engineering Science Nagoya Institute Of Technology
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Kalaga Murali
Research Center For Micro-structure Devices Nagoya Institute Of Technology:semiconductor Laboratory
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Kobayashi Y
Tokai Univ. Kanagawa Jpn
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Yuasa T
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Watanabe Junji
Research Center For Micro-structure Devices Nagoya Institute Of Technology
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Umeno Masayoshi
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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TOMITA Kazuhiro
Department of Engineering Science, Nagoya Institute of Technology
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UCHIDA Hideo
Department of Radiology, Nara Medical University
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SUSAWA Hiromoto
Department of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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ITO TSUYOSHI
Department of Agricultural Chemistry, Faculty of Agriculture, Okayama University
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Ogawa T
Faculty Of Engineering Takushoku University
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TAGUCHI Hironori
Department of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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SHIRATA Tetsuya
Department of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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ADACHI Mitsuhiro
Department of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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IMAIZUMI Mitsuru
apan Aerospace Exploration Agency
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TIAN Xuemin
Department of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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MISHRA Dillip
Department of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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TOBITA Manabu
Department of Electric and Computer Engineering, Nagoya Institute of Technology
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Nakada Naoyuki
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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TSUKAMOTO Makoto
Synthetic Crystal Research Laboratory, Faculty of Engineering, Nagoya University
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KAMEYAMA Hiroshi
Synthetic Crystal Research Laboratory, Faculty of Engineering, Nagoya University
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Tobita Manabu
Department Of Electric And Computer Engineering Nagoya Institute Of Technology
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Umeno Masayoshi
Department Of Electronic Engineerin Nagoya University
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Murase Tutomu
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Yuasa Takayuki
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Sato Nobuhiko
Eltran Business Center Canon Inc.
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Sato Nobuhiko
Eltran Project R&d Headquarters Canon Inc.
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HATTORI Hajime
Nagoya Municipal Industrial Research Institute
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Hagimoto Kouji
Department Of Environmental And Urban Planning Nagoya Institute Of Technology
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NAKADA Naoyuki
1Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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MORI Masayoshi
1Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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ZHAO Guan-Yuan
Research Center for Micro-Structure Devices, Nagoya Institute of Technology
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Hu Xiong
Department Of Electronic And Computer Engineering Nagoya Institute Of Technology
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JIANG Hao
Department of Radiation Medicine, Faculty of Naval Medicine, Second Military Medical University
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ITO Nobuyuki
Department of Electronics, Faculty of Engineering Nagoya University
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SAKAl Shiro
Department of Engineering Science, Nagoya Institute of Technology
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UCHIDA Yoshiyuki
Department of Electrical Engineering, Aichi Institute of Technology, Toyota
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YU Guolin
Research Centerfor Micro-Structure Devices, Nagoya Institute of Technology
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Ogawa Tetsuya
Institute For Chemical Research Kyoto University
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Tomita Kazuhiro
Department Of Engineering Science Nagoya Institute Of Technology
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Adachi Mitsuhiro
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Nagashima Yoshikazu
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Mosaddeq-ur-rahman Md.
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Mishra Dillip
Department Of Environmental Technology And Urban Planning Nagoya Institute Of Technology
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Susawa Hiromoto
Department Of Electric And Computer Engineering Nagoya Institute Of Technology
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Fukui Masuo
Department Of Electrical And Electronic Engineering Faculty Of Engineering The University Of Tokushi
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Ito Tsuyoshi
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Ito Tsuyoshi
Department Of Agricultural Chemistry Faculty Of Agriculture Okayama University
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Wada Takashi
Department Of Dermatology Asahikawa Medical College
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Kobayashi Y
Department Of Nuclear Engineering Graduate School Of Engineering
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Zhang B
Research Center For Nano-device And System Nagoya Institute Of Technology
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Yonehara Takao
Eltran Business Center Canon Inc.
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MURASE Kosuke
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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HORI Kengo
Department of Environmental Technology and Urban Planning, Nagoya Institute of Technology
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ZHAO Guangyuan
Research Center for Micro-Structure Devices, Nagoya Institute of Technology
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EGAWA Takasi
Research Center for Micro-Structure Devices, Nagoya Institute of Technology
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MIKURIYA Nobuo
Department of Physics, Nagoya Institute of Technology
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JINBO Takashi
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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Hori Kengo
Department Of Environmental Technology And Urban Planning Nagoya Institute Of Technology
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Murase Kosuke
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Jiang H
Research Center For Nano-device And System Nagoya Institute Of Technology
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Jiang Hao
Department Of Mathematics Xixi Campus Of Zhejiang University
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Imori Toru
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology:central Research La
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Sakal Shiro
Department Of Engineering Science Nagoya Institute Of Technology
著作論文
- Novel Low-Cost Solid-State Heterojunction Solar Cell Based on TiO_2 and Its Modification for lmproved Efficiency
- Boron-Incorporated Amorphous Carbon Films Deposited by Pulsed Laser Deposition : Semiconductors
- Effect of Radio Frequency Power on the Properties of Hydrogenated Amorphous Carbon Films Grown by Radio Frequency Plasma-Enhanced Chemical Vapor Deposition
- Theoretical Studies on Hole Transport and the Effective Hall Factor in Cubic Phase of p-Type GaN
- Thermal Stress Relaxation in GaAs Layer on New Thin Si Layer over Porous Si Substrate Grown by Metalorganic Chemical Vapor Deposition
- Room-Temperature CW Operation of AlGaAs/GaAs SQW Lasers on Si Substrates by MOCVD Using AlGaAs/AlGaP Intermediate Layers
- Emission Properties of Electrodeless Argon Gas Discharge in VUV Region
- Vacuum Ultraviolet Light Source Using Electrodeless Discharge
- Vacuum Ultraviolet Detector
- Annealing Temperature Effects on Synthesis of n-TiO_2/dye/p-CuI Solid-State Solar Cells
- The Deposition of a-C : H Films by Pulsed Laser Ablation
- Effect of Growth Temperature on InGaAsP/GaAsP Expitaxial Growth
- Crosshatch Pattern on InGaAsP Layers Grown on GaAs_P_ Substrate by LPE
- Meltback of GaAs_P_ Substrate in LPE Growth of InGaAsP
- LPE Growth of In_ Ga_xAs_P_y on GaAs_P_
- Room Temperature Operation of Visible (λ=658.6 nm) InGaAsP DH Laser Diodes on GaAsP
- Visible InGaP / GaAsP Dual Wavelength Light Emitting Diodes
- New Wavelength-Demultiplexing InGaAsP/InP Photodiodes : III-4: III-V COMPOUND SOLAR CELLS AND DETECTORS
- Measurement of Diffusion Coefficient and Surface Recombination Velocity for p-InGaAsP Grown on InP
- InGaAsP/InP Native Oxide Stripe Lasers
- InGaAsP/InP Double-Heterostructure Photodiodes
- Brillouin Scattering in Sodium Nitrite
- Brillouin Scattering in Ca_2Sr(C_2H_5CO_2)_6
- Photoconductivity Due to Inter-Valence Band Transition in p-Type Germanium
- Anisotropic Properties of Photon Drag Effect in p-type Germanium
- High-Efficiency Monolithic Three-Terminal GaAs/Si Tendem Solar Cells Fabricated by Metalorganic Chemical Vapor Deposition
- Photon-Drag Effect Due to the Transitions between Light-Hole Band and Split-Off Band in Ge
- Measurement of Subnanosecond Infra-Red Light Pulses by Photon-Drag Effect : Short Pulses of Light
- Suppression of GaInN/GaN Multi-Quantum-Well Decomposition during Growth of Light-Emitting-Diode Structure : Structure and Mechanical and Thermal Properties of Condensed Matter
- Measurement of Surface Patterns by Using Interference of Diffraeted Laser Beam
- GaAlAs/ GaAs TJS Lasers on Si Substrates Operating at Room Temperature Fabricated by MOCVD
- InGaAsP/InP Wavelength Division Solar Cells : II-3: NEW STRUCTURE AND ADVANCED MATERIAL SOLAR CELLS
- Selective MOCVD Growth of GaAs on Si Substrate with Superlattice Intermediate Layers
- Band Gap Energy and Stress of GaAs Grown on Si by MOCVD
- Deep Levels in GaAs Grown Using Superlattice Intermediate Layers on Si Substrates by MOCVD
- MOCVD Growth of GaAs_P_x (x=0-1) and Fabrication of GaAs_P_ LED on Si Substrate
- MOCVD Growth of GaAs_P_ on Si Substrate
- AlGaAs/GaAs DH Lasers on Si Substrates Grown Using Super Lattice Buffer Layers by MOCVD
- Mechnism of MOCVD Growth for GaAs and AlAs
- Solid Composition and Growth Rate of Ga_Al_xAs Grown Epitaxially by MOCVD
- Ellipsometric Studies on Sputter-Damaged Layer in n-InP
- First Room-Temperature Continuous-Wave Operation of Self-Formed InGaAs Quantum Dot-Like Laser on Si substrate Grown by Metalorganic Chemical Vapor Deposition
- AlGaAs/GaAs Laser Diodes with GaAs Islands Active Region on a Si Substrate with Higher Characteristic Temperature
- Passivation of Bulk and Surface Defects in GaAs Grown on Si Substrate by Radio Frequency Phosphine/Hydrogen Plasma Exposure : Semiconductors
- Etching Technique to Reveal Dislocations in Thin GaAs Films Grown on Si Substrates : Condensed Matter
- Stress and Strain of GaAs on Si Grown by MOCVD Using Strained Superlattice Intermediate Layers and a Two-Step Growth Method
- Effect of NaOCl-Polishing on Metal Organic Chemical Vapor Deposition grown GaAs Surface on Si Substrate by Spectroscopic Ellipsometry and Atomic Force Microscopy
- Simplified Dual Channel Optical Trarnsmission Using Integrated Light Emitters and Photodetectors
- Characteristics of GaN MESFET Grown on Sapphire Substrate by MOCVD
- High-Temperature Behaviors of GaN Schottky Barrier Diode
- Suppression of Dark-Line Defect Growth in AlGaAs/InGaAs Single Quantum Well Lasers Grown on Si Substrates
- First Fabrication of a Reliable AlGaAs/GaAs LED on Si with Self-Assembled GaAs Islands Active Region
- Influences of Dark Line Defects on Characteristics of AlGaAs/GaAs Quantum Well Lasers Grown on Si Substrates
- First Fabrication of Low-Threshold AlGaAs/GaAs Patterned Quantum Wells Laser Grown on Si Substrate
- Fabrication of Low-Threshold AlGaAs/GaAs Patterned Quantum Well Laser Grown on Si Substrate
- New Technique to Fabricate Stress-Relieved Reliable Lasers on Si Substrates
- Effects of Dislocation and Stress on Characteristics of GaAs-Based Laser Grown on Si by Metalorganic Chemical Vapor Deposition
- Optical Absorption and Photoluminescence Studies of n-type GaN
- Photoluminescence Studies of Hydrogen-Passivated Al_Ga_As Grown on Si Substrate by Metalorganic Chemical Vapor Deposition
- Effects of H Plasma Passivation on the Optical and Electrical Properties of GaAs-on-Si
- Electrical Transport Properties of GaSb Grown by Molecular Beam Epitaxy
- Selective-Area-Grown AlGaAs/GaAs Single Quantum Well Lasers on Si Substrates by Metalorganic Chemical Vapor Deposition
- High-Quality InGaN Light Emitting Diode Grown on GaN/AlGaN Distributed Bragg Reflector
- Pd/GaN Schottky Diode with a Barrier Height of 1.5 eV and a Reasonably Effective Richardson Coefficient
- Fabrication of Flat End Mirror Etched by Focused Ion Beam for GaN-Based Blue-Green Laser Diode
- Optical Degradation of InGaN/AlGaN LED on Sapphire Substrate Grown by MOCVD
- Etch Pit Observation of GaP Growrn on Si Substrate by Metalorganic Chemical Vapor Deposition
- Characterization of Antiphase Domain in GaP on Misoriented (001) Si Substrate Grown by Metalorganic Chemical Vapor Deposition
- Microwave Conductivity and Relaxation of Excess Phonons in CdS
- Assessment of the Structural Properties of GaAs/Si Epilayers Using X-Ray (004) and (220) Reflections
- Characterization and Improvement of GaAs Layers Grown on Si Using an Ultrathin a-Si Film as a Buffer Layer
- Investigation of Electrical and Optical Properties of Phosphine/Hydrogen-Plasma-Exposed In_Ga_P Grown on Si SubStrate : Semiconductors
- Electrical Characteristics of GaAs Bonded to Si Using SeS_2 Technique
- Low Temperature Growth of GaAs on Si Substrate by Chemical Beam Epitaxy
- Computer Controlled Precise Positioning for Electromagnetic Linear Motor with Correction of Periodic Error
- AlGaAs/GaAs Laser Diodes with GaAs Islands Active Regions on Si Grown by Droplet Epitaxy
- AlGaAs/GaAs Laser Diodes with GaAs Islands Active Regions on Si Substrates Grown by Droplet Epitaxy
- Hydrogen Plasma Passivation and Improvement of the Photovoltaic Properties of a GaAs Solar Cell Grown on Si Substrate
- A Modified Harmonic Oscillator Approximation Scheme for the Dielectric Constants of GaAs, InP and GaP
- Characterization of Strained GaP/Si Heterostructure by Spectroscopic Ellipsometry
- Brillouin Scattering of Thermal Phonons in CdS
- Determination of the Absolute Values of Energy Density of Acoustoelectrically Built-Up Phonons in CdS by Brillouin Scattering
- GaAs/AlGaAs Single Quantum Well Optical Switch Fabricated on Si Substrate
- High Efficiency Monolithic GaAs/Si Tandem Solar Cell Grown by Metalorganic Chemical Vapor Deposition
- Al_xGa_As/Si (r=0-0.22) Tandem Solar Cells Grown by Metalorganic Chemical Vapor Deposition
- High Efficiency GaAs/Si Monolithic Three-Terminal Cascade Solar Cells Grown by Metal-Organic Chemical Vapor Deposition
- Effect of Magnetic Field on Density Distribution of Injected Plasma in Semiconductor Rods
- Density Distributions of Injected Plasma along the Length of Semiconductor Rods
- Two-Dimensional Growth of GaP on Si Substrates under High V/III Ratio by Metal Organic Vapor Phase Epitaxy
- Low-Threshold AlGaAs/GaAs MQW Laser Diode Fabricated on Si Substrates by MOCVD
- AlGaAs/GaAs MQW Laser Diode Fabricated on Si Substrates by MOCVD
- Initial Growth Mechanism for GaAs and GaP on Si Substrate by Metalorganic Chemical Vapor Deposition
- Surface and Bulk Passivation effect of GaAs grown on Si Substrates by SeS_2Treatment