Aoyagi Y | Inst. Physical And Chemical Res. Riken Wako Jpn
スポンサーリンク
概要
関連著者
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Aoyagi Y
Riren (the Institute Of Physical And Chemical Research)
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Aoyagi Y
Semiconductor Laboratory Riken The Institute For Physical And Chemical Research
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Aoyagi Y
The Institute Of Physical And Chemical Research
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AOYAGI Yoshinobu
The Institute of Physical and Chemical Research
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Aoyagi Y
Inst. Physics And Chemical Res. (riken) Wako Jpn
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Aoyagi Yoshinobu
Riren (the Institute Of Physical And Chemical Research)
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Aoyagi Yoshinobu
Nanoelectronic Materials Laboratory Frontier Research Program Riken
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Aoyagi Y
Interdisciplinary Graduate School Of Science & Engineering Tokyo Institute Of Technology
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Ishibashi K
Inst. Physical And Chemical Res. (riken) Saitama Jpn
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Ishibashi Koji
Department Of Applied Physics And Dimes Delft University Of Technology:the Institute Of Physical And
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Ishibashi K
Riken Saitama Jpn
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Ishibashi K
Sumitomo Electric Ind. Ltd. Hyogo Jpn
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ISHIBASHI Koji
Advanced Device Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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SUGANO Takuo
Nanoelectronic Materials Laboratory, RIKEN
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Bird J
Department Of Electrical Engineering University At Buffalo
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Bird Jonathan
Nano-electronics Riken
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Ferry D
Arizona State Univ. Az Usa
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OCHIAI Yuichi
Department of Materials Technology, Chiba University
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AOYAGI Yoshinobu
Frontier Research Program, The Institute of Physical and Chemical Research (RIKEN)
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Aoyagi Y
Inst. Physical And Chemical Res. (riken) Wako Jpn
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Sugano Takeshi
Department Of Electrical Engineering Faculty Of Engineering Osaka University
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Akis Richard
Center For Solid State Electronics Research And Department Of Electrical Engineering Arizona State U
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SUGANO Takuo
Frontier Research Program, The Institute of Physical and Chemical Research (RIKEN)
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FERRY David
Center for Solid State Electronics Research & Department of Electrical Engineering, Arizona State Un
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AOYAGI Yoshinobu
Nanoelectronic Materials Laboratory, RIKEN
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YAMAMOTO Kazunuki
Department of Materials Science, Chiba Unviersity
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Yamamoto K
Univ. Of Tsukuba
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AOYAGI Yoshinobu
Semiconductor Laboratory, RIKEN, The Institute for Physical and Chemical Research
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Aoyagi Yoshinobu
Semiconductor Laboratory Riken The Institute For Physical And Chemical Research
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Suzuki M
Advanced Device Laboratory The Institute Of Physical And Chemical Research (riken)
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BIRD Jonathan
Nanoelectronics Materials Laboratory, Frontier Research Program, RIKEN
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ISHIBASHI Koji
Nanoelectronics Materials Laboratory, Frontier Research Program, RIKEN
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Bird Jonathan
Nanoelectronics Materials Laboratory Frontier Research Program Riken
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HARA Tamio
Toyota Technological Institute
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Hara T
Toyota Technological Inst. Nagoya Jpn
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SUGANO Takuo
The Institute of Physical and Chemical Research
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Aoyagi Yoshinobu
Riken
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ISHIBASHI Koji
Frontier Research Program, RIKEN
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Meguro T
Tohoku Univ. Sendai Jpn
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BIRD Jonathan
Nano-electronics, RIKEN
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AOYAGI Yoshinobu
Nano-electronics, RIKEN
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SUGANO Takuo
Nano-electronics, RIKEN
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ISHII Makoto
Optoelectronics Joint Research Laboratory
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Lu Yong-feng
Department Of Electrical Engineering National University Of Singapore
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Lu Y‐f
National Univ. Singapore Singapore
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Morikawa T
Toyo Univ. Saitama Jpn
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Morikawa T
Communications Res. Lab. Tokyo Jpn
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Morikawa Takitaro
Faculty Of Engineering Toyo University
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Ferry David
Department Of Electrical Engineering Arizona State University
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Kusano J
Nhk Sci. And Technical Res. Lab. Tokyo Jpn
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Kusano Jun-ichi
Nhk Science And Technical Research Laboratories
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Ishii M
Electrotechnical Laboratory
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Ishii M
Optoelectronics Joint Research Laboratory
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Ishii M
Toyota Central Res. And Dev. Lab. Inc. Aichi Jpn
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ZHAO Xinwei
The Institute of Physical and Chemical Resarch
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SCHOENFELD Olaf
The Institute of Physical and Chemical Resarch
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TAKAI Mikio
Department of Electrical Engineering, Faculty of Engineering Science, Osaka University
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Ishii M
Liquid Crystal Lab. Sharp Corp.
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ANDO Kozo
The Institute of Physical and Chemical Research
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ISHIBASHI Kohji
Nano-electronics, RIKEN
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OCHIAI Yuichi
Materials Research Department, Chiba University
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Ando K
Toyota Technological Institute
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TSUYA Daiju
Advanced Device Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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ISHIBASHI Koji
Semiconductors Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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Ishii M
Central Research Laboratory Nihon Cement Co. Lid.
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MEGURO Takashi
RIKEN (The Institute of Physical and Chemical Research)
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SUZUKI Masaki
Department of Physics, Tokyo Metropolitan University
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WIDJAJA A.
Department of Material Science, Chiba University
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KOMURO Shuji
Faculty of Engineering, Toyo University
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Komuro Shuji
Faculty Of Engineering Toyo University
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Segawa Yusaburo
Institute Of Physical And Chemical Research
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NOMURA Shintaro
Institute of Applied Microbiology, The University of Tokyo
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Hara Tamio
The Institute Of Physical And Chemical Research
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Nomura S
Univ. Tsukuba Tsukuba Jpn
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SHIOKAWA Takao
Semiconductor Laboratory, RIKEN, The Institute for Physical and Chemical Research
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Segawa Y
Photodynamics Research Center The Institute Of Physical And Chemical Research (riken)
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SCHOENFELD Olaf
Frontier Research Program, The Institute of Physical and Chemical Research (RIKEN)
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ZHAO Xinwei
Frontier Research Program, The Institute of Physical and Chemical Research (RIKEN)
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Lin Li-hung
Department Of Materials Technology Chiba University
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AKIS Richard
Nanostructures Research Group, Arizona State University
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FERRY David
Nanostructures Research Group, Arizona State University
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BIRD Jonathon
Frontier Research Program, RIKEN
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Sasaki N
Basic Process Development Division Fujitsu Limited
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KUROKAWA Yoshiyuki
School of Engineering, University of Tsukuba
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TAKEMORI Tadashi
Institute of Materials Science, University of Tsukuba
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SASAKI Nobuyoshi
Device Analysis and Evaluation Technology Center, NEC Corporation
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VASILESKA Dragica
Center for Solid State Electronics Research, and Center for Systems Science and Engineering, Arizona
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SASAKI Nobuyuki
Department of Materials Science, Chiba University
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BIRD Jonathan
Frontier Research Program, RIKEN
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CONNOLLY Kevin
Center for Solid State Electronics Research, Arizona State University
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UDIPI Sujeeth
Center for Solid State Electronics Research and Department of Electrical Engineering, Arizona State
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PIVIN David
Center for Solid State Electronics Research and Department of Electrical Engineering, Arizona State
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TANKEI Katsuichi
Laboratory of Physics, Matsusaka University
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NAGAOKA Yosuke
Yukawa Institute for Theoretical Physics, Kyoto University
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Sasaki N
Toshiba Corp. Yokohama Jpn
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Nagaoka Yosuke
Yukawa Institute For Theoretical Physics Kyoto University
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SUZUKI Masaki
Semiconductors Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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TSUYA Daiju
Semiconductors Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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ISHII Masashi
RIKEN (The Institute of Physical and Chemical Research)
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DEN Shoji
Irie Koken Co., Ltd.
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KOBAYASHI Takayoshi
Department of Applied Physics and Chemistry, Institute for Laser Science, The University of Electro-
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Namba S
Inst. Physical And Chemical Research Wako
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SEGAWA Yusaburo
The Institute of Physical and Chemical Research
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YASUDA Takashi
Photodynamics Research Center, The Institute of Physical and Chemical Research (RIKEN)
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NAMBA Susumu
Department of Electrical Engineering, Faculty of Engineering Science, Osaka University
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Segawa Yusaburo
Photodynamics Research Center Riken
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Hutchings Keith.
School Of Mathematical & Physical Science University Of Sussex
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Hara Tamio
Department Of Mathematics Faculty Of Science And Technology Science University Of Tokyo
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Namba S
Japan Atomic Energy Res. Inst. Kyoto Jpn
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Namba S
Osaka Univ. Osaka
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Namba Susumu
Faculty Of Engineering Science And Research Center For Extreme Materials Osaka University
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Namba Susumu
Nagasaki Institute Of Applied Science
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Hirose H
Shimadzu Corporation
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Aksenov Igor
The Institute Of Physical And Chemical Research (riken)
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Kimura Y
Ntt Access Network Systems Laboratories Optical Soliton Transmission Research Group
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Iwai Sohachi
Riken (the Institute Of Physical And Chemical Research)
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Yamamoto Y
College Of Engineering Hosei University
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Iimura Y
Tokyo Univ. Agriculture And Technology Tokyo
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Iimura Yasufumi
Faculty Of Technology Tokyo University Of Agriculture And Technology
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GAMO Kenji
Faculty of Engineering Science, Osaka University
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SHIMIZU Ryuichi
Department of Applied Physics, Osaka University
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Nomura S
The Institute Of Physical And Chemical Resarch
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Nomura Shintaro
The Institute Of Physical And Chemical Research(riken)
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AOYAGI Yoshinobu
Institute of Physical and Chemical Research (RIKEN)
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OYAMA Hitoshi
The Institute of Physical and Chemical Research
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MISAWA Kazuhiko
Department of Physics, University of Tokyo
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Yamamoto Yuichi
Division Of Electronic And Information Engineering Faculty Of Technology Tokyo University Of Agricul
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Edwards G
Center For Solid State Electronics Research Arizona State University
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Segawa Yusaburo
Photodynamics Research Center Frontier Research Program The Institute Of Physical And Chemical Resea
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YAMAMOTO Yasuhiro
Research Center of Ion Beam Technology, Hosei University
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HEMPEL Thomas
Department of Experimental Physics, Magdeburg Universiry
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KUSANO Junichi
Frontier Research Program, The Institute of Physical and Chemical Research (RIKEN)
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KUSANO Jun-ichi
The Institute of Physical and Chemical Research (RIKEN)
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BIRD Jonathan
Center for Solid State Electronics Research & Department of Electrical Engineering, Arizona State Un
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LIN L.-Hung
Department of Materials Science, Chiba University
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ISHIBASHI Kohji
Nanoelectronic Materials Laboratory, RIKEN
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HOLMBERG Nicholas
Nanostructures Research Group, Arizona State University
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BIRD Jonathan
Nanostructures Research Group, Arizona State University
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VASILESKA Drgica
Nanostructures Research Group, Arizona State University
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EDWARDS Gerard
Center for Solid State Electronics Research, Arizona State University
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Gamo Kenji
Faculty Of Engineering Science Osaka University
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Gamo Kenji
Faculty Of Engineering Science And Research Center For Extreme Materials Osaka University
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NAMBA Susumu
Frontire Research Program
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TSUKAGOSHI Kazuhito
International Center for Materials and Nanoarchitectonics, National Institute for Materials Science
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Yamamoto Y
Nara Inst. Sci. And Technol. Nara Jpn
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Aoyagi Yoshinobu
Interdisciplinary Graduate School Of Science And Engineering Tokyo Institute Of Technology
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Edwards Gerard
Center For Solid State Electronics Research Arizona State University
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Nonoyama Shinji
Quantum Material Research Laboratory Frontier Research Program The Institute Of Physical And Chemica
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COOPER John
Nanoelectronic Materials Laboratory, Frontier Research Program, RIKEN
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MICOLICH Adam
School of Physics, University of New South Wales
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NEWBURY Richard
School of Physics, University of New South Wales
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TAYLOR Richard
School of Physics, University of New South Wales
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OLATONA Dapsy
School of Physics, University of New South Wales
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WIRTZ Rene
School of Physics, University of New South Wales
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PIVIN Jr.
Center for Solid State Electronics Research, Arizona State University
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CONNOLLY Jr.
Center for Solid State Electronics Research and Department of Electrical Engineering, Arizona State
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ISHIBASHI Koji
The Institute of Physical and Chemical Research (RIKEN)
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BIRD Jonathan.
The Institute of Physical and Chemical Research (RIKEN)
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LAKRIMI Mohamed
School of Mathematical & Physical Science, University of Sussex
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GRASSIE Alexander
School of Mathematical & Physical Science, University of Sussex
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ISHIBASHI Koji
Nano-electronics, RIKEN
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Wirtz Rene
School Of Physics University Of New South Wales
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Micolich Adam
School Of Physics University Of New South Wales
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Taylor Richard
School Of Physics University Of New South Wales
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Olatona Dapsy
School Of Physics University Of New South Wales
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Newbury Richard
School Of Physics University Of New South Wales
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Lakrimi Mohamed
School Of Mathematical & Physical Science University Of Sussex
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Namba Susumu
Research Center For Extreme Materials And Department Of Electrical Engineering Osaka University
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Namba Susumu
Frontier Research Program Riken
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OGAI Keiko
Department of Applied Physics, Faculty of Engineering, Osaka University
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KUMURA Yoshihide
Department of Applied Physics, Faculty of Engineering, Osaka University
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ISHIBASHI Kouji
Frontier Research Program, RIKEN
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SUZUKI Masaki
Advanced Device Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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IDA Tetsuya
Semiconductors Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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TSUKAGOSHI Kazuhito
Semiconductors Laboratory, The Institute of Physical and Chemical Research(RIKEN)
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KANDA Akinobu
Institute of Physical and Chemical Research (RIKEN)
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GEISLER Martin
Institute of Physical and Chemical Research (RIKEN)
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ISHIBASHI Koji
Institute of Physical and Chemical Research (RIKEN)
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SUGANO Takuo
Institute of Physical and Chemical Research (RIKEN)
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AOYAGI Yoshinobu
Laboratory for Quantum Materials, Frontier Research Program, Institute of Physical and Chemical Rese
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SUGANO Takuo
Laboratory for Quantum Materials, Frontier Research Program, Institute of Physical and Chemical Rese
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OGAI Keiko
Toyota Technological Institute
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ISHII Masashi
The Institute of Physical and Chemical Research (RIKEN)
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MEGURO Takashi
The Institute of Physical and Chemical Research (RIKEN)
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RYOJI Makoto
RIKEN, The Institute of Physical and Chemical Research
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HARA Tamio
Akashi Technical Institute, Kawasaki Heavy Industries
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OHNISHI Katsu
RIKEN, The Institute of Physical and Chemical Research
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HAMAGAKI Manabu
Akashi Technical Institute, Kawasaki Heavy Industries
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DAKE Yosinori
Akashi Technical Institute, Kawasaki Heavy Industries
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TOHKAI Masakuni
Akashi Technical Institute, Kawasaki Heavy Industries
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SIMKO Jeffry
Frontier Research Program, RIKEN (The Institute of Physical and Chemical Research)
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OZASA Kazunari
RIKEN (The Institute of Physical and Chemical Research)
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HIRATA Akira
School of Science and Engineering, Waseda University
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KEEFFE Patrick
RIKEN (The Institute of Physical and Chemical Research)
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MORAIN Ciaran
RIKEN (The Institute of Physical and Chemical Research)
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IIMURA Yasufumi
Frontier Research Program, RIKEN
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KODAMA Hirokazu
College of Engineering, Hosei University
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AOYAGI Yosinobu
RIKEN, Institute of Physical and Chemical Research
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KATO Takashi
Faculty of Engineering, Toyo University
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KOMURO Shunji
Faculty of Engineering
著作論文
- Magnetic Field in Direct- and Indirect-Gap Semiconductor Quantum Dots
- Laser Surface Cleaning in Air: Mechanisms and Applications
- Growth of Ultrathin Silver Films by Excimer-Laser-Induced Decomposition of Silver Acetate in Air
- Excimer-Laser Removal of SiO_2 Patterns from GaAs Substrates
- Optical, Electrical and Structural Investigations of the Transition from Amorphous to Microcrystalline Silicon
- Violet and Blue Light Emissions from Nanocrystalline Silicon Thin Films
- Effect of a Magnetic Field on the Excitonic Luminescence Decay Time in a GaAs-Al_xGa_As Quantum Well
- Modeling of Electron Transport in Corrugated Quantum Wires
- Ballistic Weak Localization and Wave Function Scarring in Quantum Wires
- Is There a Magnetic-Field-Induced Breakdown in the Universality of Conductance Fluctuations?
- Electronic Properties of Polysilane Calculated with the Real-Time Real-Space Higher-Order Finite-Difference Method
- Fast Algorithm for Calculating Two-Photon Absorption Spectra by Real-Time Real-Space Higher-Order Finite-Difference Method
- Probing the Discrete Level Spectrum of Open Quantum Dots
- Phase Breaking of Coherent Electron Waves in Dot Array Systems ( Quantum Dot Structures)
- The Role of Electron Phase Coherence in Quantum Transport through Open Ballistic Cavities ( Quantum Dot Structures)
- Quantum Transport in Single and Multiple Quantum Dots ( Quantum Dot Structures)
- Carrier Transport in Nanodevices
- Trajectory Transition Due to Gate Depletion in Corrugation Gated Quantum Wires
- Carrier Transport in Nanoscale Structures
- Electron Wave Interference in Ballistic and Quasi-Ballistic Nanostructures
- Zero-Current Voltage Fluctuations in Quantum Dots at High Magnetic Fields
- Study of Scattering Processes in Quantum Wires by a Correlation Field Analysis of the Phase Coherent Interferences
- The Magnetic Field Dependent Characteristics of Conductance Fluctuations in Ballistic Quantum Dots
- Experimental Determination of the Conduction Width in Quasi Ballistic Wires
- Microfabricated Submicron Al-Filament Biprism as Applied to Electron Holography : Micro/nanofabrication and Devices
- Quantum dot transport of semiconducting single-wall carbon nanotubes
- 招待講演 Carbon nanotubes for quantum-dot devices
- 招待講演 Carbon nanotubes for quantum-dot devices
- Quantum Dots in Carbon Nanotubes
- Characterization of Small Superconducting Rings and Its Possible Application to New Single Flux Quantum Devices
- Digital Etching Using KrF Excimer Laser: Approach to Atomic-Order-Controlled Etching by Photo Induced Reaction
- New Etching System with a Large Diameter Using Electron Beam Excited Plasma
- Direct Observation of Self-Limiting Gallium Deposition on GaAs during Laser-Atomic Layer Epitaxial Processing
- Reversible Reconstruction Changes in GaAs Surfaces due to Hydrogen Termination
- Study of Surface Processes in the Digital Etching of GaAs
- Radical-Beam-Induced Surface Reaction Processes of Porous Si
- Development and Applications of a Compact Electron Cyclotron Resonance Source : Etching
- Transition from Semi-Classical to Quantum Transport in Quasi-Ballistic Wires
- Composition Change of Indium Oxide Film by Triethylgallium Irradiation Prepared for In Situ Selective Epitaxy Use
- Thin Gallium Oxide Film Deposited in Vacuum for In Situ Process Use
- Alignment Control of a Liquid Crystal on a Photosensitive Polyvinylalcohol Film
- Enhancement of the 15.4 nm Line of the Lithiumlike Aluminum Recombining Plasma Laser using a Half Cavity
- Enhancement of Soft X-Ray Emission from Al Plasma by Pulse Train Laser Irradiation
- Observation of Soft X-Ray Amplified Spontaneous Emission in a Recombining Si Plasma Pumped by a Low-Power Laser