重川 秀実 | Univ. Tsukuba Tsukuba
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関連著者
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重川 秀実
Univ. Tsukuba Tsukuba
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重川 秀実
筑波大学物理工学系
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Shigekawa Hidemi
Institute Of Applied Physics And Crest Japan Science And Technology Corporation (jst) University Of
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Shigekawa Hidemi
Institute Of Applied Physics University Of Tsukuba
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SHIGEKAWA Hidemi
Institute of Applied Physics, University of Tsukuba
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Shigekawa Hidemi
Institute Of Applied Physics And 21st Coe University Of Tsukuba
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森田 隆二
北海道大学大学院工学研究科応用物理学専攻
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森田 隆二
北大 大学院工学研究科
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Morita Ryuji
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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吉村 雅満
豊田工業大学ナノハイテクリサーチセンター
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Miyake K
Institute Of Applied Physics Crest Japan Science And Technology Corporation (jst) University Of Tsuk
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Hata Kenji
Institute of Applied Physics and CREST, Japan Science Technology Cooperation, University of Tsukuba
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YAMASHITA Mikio
Department of Applied Physics, Hokkaido University
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吉村 雅満
豊田工大
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Takeuchi Osamu
Institute Of Applied Physics University Of Tsukuba
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Takeuchi O
Institute Of Applied Physics University Of Tsukuba
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MIYAKE Koji
Institute of Applied Physics, CREST, Japan Science and Technology Corporation (JST), University of T
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Yamashita Mikio
Department Of Applied Physics Hokkaido University
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Hata K
Institute Of Applied Physics Crest University Of Tsukuba
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河津 璋
東大工
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吉村 雅満
東大工
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重川 秀実
筑波大物質工
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MORITA Ryuji
Department of Applied Physics, Hokkaido University
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Ishida Masahiko
Institute Of Materials Science University Of Tsukuba
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Takeuchi Osamu
Institute Of Applied Physics And 21st Coe University Of Tsukuba
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Takeuchi O
大阪大学免疫学フロンティア研究センター 自然免疫学
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荒 則彦
東大工
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影島 賢巳
東大工
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塩田 隆
東大工
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Sainoo Y
Univ. Tsukuba Tsukuba Jpn
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Komiyama Makoto
Department Of Chemistry And Biotechnology Graduate School Of Engineering The University Of Tokyo
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荒 則彦
理研・国際フロンティア
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松本 益明
東大、工
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Sainoo Yasuyuki
Institute Of Multidisciplinary Research For Advanced Materials (imram) Tohoku University
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Murakami Hidetoshi
Department Of Applied Physics Hokkaido University
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松本 益明
東大工
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西片 一昭
東大工
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Oigawa Haruhiro
Institute of Materials Science, University of Tsukuba
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Yasuda Satoshi
Institute Of Advanced Energy Kyoto University
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SUMAOKA Jun
Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo
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KOMIYAMA Makoto
Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo
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Kimura Tomohiko
Institute of Applied Physics and CREST, Japan Science Technology Cooperation, University of Tsukuba
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Sainoo Yasuyuki
Institute Of Applied Physics And Crest Japan Science And Technology Corporation (jst) University Of
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Murakami H
Nhk Sci. And Technical Res. Lab. Tokyo Jpn
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Murakami H
Department Of Applied Chemistry Graduate School Of Engineering Tokyo University Of Agriculture And T
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Li L
Department Of Photonics Material Science Chitose Institute Of Science And Technology:crest Japan Sci
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Sumaoka Jun
Department Of Chemistry And Biotechnology Graduate School Of Engineering The University Of Tokyo
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森 初果
東大物性研
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森 初果
超伝導工学研
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斉藤 軍治
東大物性研
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矢持 秀起
京大理
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矢持 秀起
東大物性研
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MORI Takehiko
Department of Organic and Polymeric Materials, Graduate School of Science and Engineering, Tokyo Ins
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小宮山 真
東京大学先端科学技術研究センター
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吉村 雅満
広島大学工学部
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Kim Yousoo
Surface Chemistry Laboratory
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Sainoo Yasuyuki
Riken:institute Of Applied Physics And Crest Japan Science And Technology Corporation (jst) Universi
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MURAKAMI Hidetoshi
Department of Applied Physics, Hokkaido University
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Kim Yousoo
Surface Chemistry Laboratory Riken
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Kanai M
Inst. Physical And Chemical Res. (riken) Saitama Jpn
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Mori Takehiko
Department Of Organic And Polymeric Materials Graduate School Of Science And Engineering Tokyo Insti
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Kawai M
Riken (inst. Physical And Chemical Res.) Saitama Jpn
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Yasuda S
Fuji Xerox Co. Ltd. Kanagawa Jpn
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LI Yan
Institute of Natural Medicine, Toyama Medical and Pharmaceutical University
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Kim Y
Lg Electronics Seoul Kor
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KAWAI Maki
RIKEN (Institute of Physical and Chemical Research)
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YOSHIZAKI Ryozo
Institute of Applied Physics,University of Tsukuba
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Kawai Masayuki
Faculty Of Science Tokai University
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Li Y
Inst. Molecular Sci. Okazaki Jpn
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KIM Yousoo
RIKEN (Institute of Chemistry and Physics)
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FUKIDOME Hirokazu
RIKEN (Institute of Chemistry and Physics)
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KOMEDA Tadahiro
RIKEN (Institute of Chemistry and Physics)
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Komeda Tadahiro
Riken (the Institute Of Physical And Chemical Research)
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Komeda Tadahiro
Texas Instruments Tsukuba R & D Center
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Komeda Tadahiro
Tsukuba Research And Development Center Texas Instruments
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YOSHIDA Shoji
Institute of Applied Physics, University of Tsukuba, 21st COE, CREST-JST
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Fukidome Hirokazu
Riken
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河津 璋
東京大学工学系研究科
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Li Yan
Institute Of Applied Physics Crest Japan Science And Technology Corporation (jst) University Of Tsuk
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Kimura T
Photonics Research Institute National Institute Of Advanced Industrial Science And Technology
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Mori K
Institute Of Material Science University Of Tsukuba
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Kim Y
Surface Chemistry Laboratory
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Kawai M
Surface Chemistry Laboratory
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YOSHIZAKI Ryozo
Cryogenics Center, University of Tsukuba
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Kawai M
Institute Of Molecular And Cellular Biosciences University Of Tokyo
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金 有洙
理研
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川合 真紀
理化学研究所
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金 有洙
理化学研究所
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米田 忠弘
東北大多元研
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KOMIYAMA Makoto
Research Center for Advanced Science and Technology, The University of Tokyo
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水谷 照吉
愛知工業大学電気工学科
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Mizutani Teruyoshi
Depertment Of Electrical Engineering Nagoya University
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Mizutani Teruyoshi
Department Of Electrical Engineering School Of Engineering Nagoya University
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川端 和重
出光興産中研
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米田 忠弘
理化学研究所
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斉藤 軍治
京大理
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大島 雅史
日本カーリット
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AKIYAMA Tomoko
Department of Psychiatry, Komagino Hospital
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金 有洙
理化学研究所表面化学研究室
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Watanabe Takashi
Department of Chemistry, Graduate School of Science, Kyoto University
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斉藤 芳男
高エネ研
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大島 雅史
東大物性研
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Akiyama Tomoko
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo:(present Address)nikkei
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米田 忠弘
理化学研究所表面化学研究室
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柘植 弘志
東大工
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道祖尾 恭之
独立行政法人理化学研究所基幹研究所
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Muro T
Jasri Spring-8
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根城 均
日本IBM
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小出 昭夫
日本IBM
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道祖尾 恭之
筑波大学物理工学系
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Zhou H‐s
National Inst. Advanced Industrial Sci. And Technol. (aist) Ibaraki
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ZHOU Haoshen
Energy Electronics Institute, National Institute of Advanced Industrial Science and Technology (AIST
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HONMA Itaru
Energy Electronics Institute, National Institute of Advanced Industrial Science and Technology (AIST
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ASAI Keisuke
Department of Quantum Engineering and System Science, Graduate School of Engineering, The University
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ISHIGURE Kenkichi
Department of Quantum Engineering and Systems Science, The University of Tokyo
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Ishigure Kenkichi
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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Ishigure K
Department Of Quantum Engineering And Systems Science The University Of Tokyo
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Honma I
National Inst. Of Advanced Industrial Sci. And Technol. (aist) Ibaraki
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Shigekawa Hidemi
Department Of Applied Physics The University Of Tokyo
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TAKEDA Naoya
Department of Neurosurgery, Nishi-Kobe Medical Center
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XU Ling
Schering-Plough Ressearch Institute
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根城 均
物質材料研究機構
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根城 均
物質・材料研究機構ナノマテリアル研究所
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根城 均
金材技研
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HYODO Shin-ichi
Department of Applied Physics, Faculty of Engineering, the University of Tokyo
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Xu L
Schering-plough Ressearch Institute
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岡田 正和
広島大学生物生産学部
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Zhou Hao-shen
National Laboratory Of Solid State Microstructures And Department Of Physics Nanjing University
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西片 一昭
古河電工横浜研究所半導体研究センター
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八瀬 清志
広島大生物生産
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岡田 正和
広島大生物産
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森 竜雄
Nagoya Univ. Aichi Jpn
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Mori T
Department Of Electrical Engineering School Of Engineering Nagoya University
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Mori Tatsuo
Department Of Electrical Engineering School Of Engineering Nagoya University
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Okano Tatsuo
Institute of Industrial Science, The University of Tokyo
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重川 秀実
筑波大物理工学系・21世紀 COE
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HARADA Akira
Department of Macromolecular Science, Graduate School of Science, Osaka University
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NAGAMURA Toshihiko
UNISOKU Co., Ltd.
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Yoshida M
Functional Materials Research Laboratories Nec Corporation
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IWATSUKI Masashi
JEOL Ltd.
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YOSHIMURA Masamichi
Department of Electrical Engineering, Hiroshima University
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Mori T
National Lab. High Energy Physics Ibaraki
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Tokumaru Katsumi
Photonics Research Institute National Institute Of Advanced Industrial Science And Technology
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川端 和重
出光中研
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川津 璋
東大工
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清水 均
東大工
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Nannichi Yasuo
Institute of Materials Science, University of Tsukuba
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Hyodo S
Himeji Inst. Technol. Hyogo Jpn
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Hyodo Shin-ichi
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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Yasutda Satoshi
Institute Of Applied Physics Crest Japan Science And Technology Corporation 'jst) University Of
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YOSHIDA Masayuki
Kyushu Institute of Design
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FUTABA Don
Institute of Applied Physics, CREST, Japan Science and Technology Corporation (JST), University of T
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MATSUMOTO Masuaki
Institute of Industrial Science, University of Tokyo
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Kaikoh Takashi
Institute of Applied Physics, Center for TARA, CREST, Japan Science and Technology Corporation (JST)
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Iinuma Kouichi
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Imayoshi Takahiro
Department of Applied Physics, University of Tokyo
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Tokumoto Hiroshi
Joint Research Center for Atom Technology, National Institute for Advanced Interdisciplinary Researc
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河津 璋
東京大学工学部物理工学科
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Morita Ryuji
Institute of Applied Physics and CREST, Japan Scinence Technology Cooperation, University of Tsukuba
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DATA Kenji
Institute of Applied Physics and CREST, Japan Science and Technology Corporation (JST), University o
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FUJITA Mitsutaka
Institute of Materials Science,University of Tsukuba
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OHRAI Yoshihisa
Institute of Applied Physics, University of Tsukuba, 21st COE, CREST-JST
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GOZU Tomoaki
Institute of Applied Physics, University of Tsukuba, 21st COE, CREST-JST
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IIJIMA Sumio
Faculty of Science and Technology, Meijo University
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SUMAOKA Jun
Research Center for Advanced Science and Technology, The University of Tokyo
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PAN Fenggang
Research Center for Advanced Science and Technology, The University of Tokyo
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NONAKA Aya
Research Center for Advanced Science and Technology, The University of Tokyo
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NAKAMURA Shinki
Department of Applied Physics, Hokkaido University
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LI Liming
Department of Photonics Material Science, Chitose Institute of Science and Technology
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KARASAWA Naoki
Department of Applied Physics, Hokkaido University
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LI Liming
Hokkaido University, Chitose Institute of Science and Technology, and Core Research for Evolutional
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KUSAKA Satoru
Department of Applied Physics, Hokkaido University, and Core Research for Evolutional Science and Te
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KARASAWA Naoki
Hokkaido University, Chitose Institute of Science and Technology, and Core Research for Evolutional
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Zhou Haoshen
Energy Division Electrotechnical Laboratory (etl)
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Komiyama Makoto
Research Center For Advanced Science And Technology The University Of Tokyo
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Nannichi Yasuo
Institute Of Materials Science And Center For Tara Tsukuba Advanced Research Alliance University Of
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Pan Fenggang
Research Center For Advanced Science And Technology The University Of Tokyo
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TSUNO Takao
Engineering Research Institute, Faculty of Engineering, The University of Tokyo
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NAKAMURA Yoshio
Engineering Research Institute, Faculty of Engineering, The University of Tokyo
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Tokumoto Hiroshi
Joint Research Center For Atom Technology (jrcat)
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Imayoshi Takahiro
Department Of Applied Physics University Of Tokyo
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Yoshida Masayoshi
Department Of Electronic Engineering Faculty Of Engineering Osaka University
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Nagamura Toshihiko
Unisoku Co. Ltd.
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Nagamura Toshihiko
Unisoku Co.
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重川 秀実
筑波大物理工学系
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吉村 昌弘
Division Of Electric Electronic And Information Engineering Graduate School Of Engineering Osaka Uni
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Nakamura Y
The Authors Are With Fujitsu Laboratories Limited
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GOTO Yasuyuki
Institute of Materials Science, and Center for- Tsukuba Advanced Research Alliance (TARA), Universit
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YOSHIDA Mitsuho
Computational Group Department of Knowledge-Based Information Engineering, Toyohashi University of T
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OZAWA Takehiro
Unisoku Co., Ltd.
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NAKAMOTO Keiichi
JEOL Ltd.
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Yoshida M
National Institute Of Advanced Industrial And Science Technology (aist)
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Yoshida Mitsuho
Computational Chemistry Group Department Of Knowledge-based Information Engineering Toyohashi Univer
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Nonaka Aya
Research Center For Advanced Science And Technology The University Of Tokyo
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Data Kenji
Institute Of Applied Physics And Crest Japan Science And Technology Corporation (jst) University Of
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Futaba Don
Institute Of Applied Physics Crest Japan Science And Technology Corporation (jst) University Of Tsuk
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Sumaoka Jun
Research Center For Advanced Science And Technology The University Of Tokyo
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Tsuno Takao
Itami Research Laboratories Sumitomo Electric Industries Ltd.
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Honma Itaru
Energy Division Electrotechnical Laboratory (etl)
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Kawazu Akira
Institute Of Materials Science And Center For Tara Tsukuba Advanced Research Alliance University Of
著作論文
- 2p-K-2 有機伝導体(BEDT-TTF)_2X(X=I_3,KHg(SCN)_4,(NH_4)Hg(SCN)_4)表面のSTM観察
- 分子シャトルの実現 : 走査トンネル顕微鏡による分子操作
- 2p-K-1 有機超伝導体(BEDT-TTF)_2Cu(NCS)_2表面のSTMによる研究
- Determination of Third-Order Optical Nonlinearity Dispersion of 1-Methyl-1'-Octadecyl-2, 2'-Cyanine Perchlorate Langmuir-Blodgett Films Using Electroabsorption Spectroscopy
- Aggregation Effect on the Third-Order Optical Nonlinearity in 4-(N, N-Diethylamino)-β-Nitrostyrene-Doped Polymer Films
- Nonresonant femtosecond second hyperpolarizabilities of intramolecular charge-transfer molecules with great excited- and ground-state dipole-moment differences
- 30p-BPS-8 グラファイト上に真空蒸着したTTF-TCNQ表面のSTM観察
- 3a-K-1 マイカ上に真空蒸着したTTF-TCNQ表面のSTM観察
- STM-IETS測定の実際
- 29p-ZF-3 STMによる有機導電体薄膜の観察
- 6p-T-1 時間分解型LEED装置の製作
- 5p-T-10 In/Si(111)の等温、昇温脱離
- 5p-T-6 LEEDによるSi(111)√×√-Alの構造解析
- Adsorption and Wetting Structures of Kr on Pt(111) at 8K and 45K Studied by Scanning Tunneling Microscopy
- Si(111) Surface under Phase Transitions Studied by the Analysis of Inner Layer Structures Using Bias-Dependent Scanning Tunneling Microscopy
- Characteristic Configuration of Cis-2-butene Molecule on Pd(110) Determined by Scanning Thnneling Microscopy
- Scanning Tunneling Microscopy Study of Water Molecules on Pd(110) at Cryogenic Temperature
- Structures of Self-Assembled Monolayer of Molecules Adsorbed on Highly Oriented Pyrolytic Graphite and Au(111) Substrates
- 第10回SPM国際コロキウム報告
- Initial Stage of Nitridation of GaAs(001): Atomic Scale View
- 走査型トンネル顕微鏡(12)
- 光励起 STM
- 有機材料のSTM (走査トンネル顕微鏡(STM)) -- (化学への応用)
- 走査型プローブ顕微鏡による有機伝導体薄膜の表面観察
- 第4回走査型トンネル顕微鏡/電子分光国際会議
- Electronic Structure of the Si(100) Surface A Defects Analyzed by Scanning Tunneling Spectroscopy at 80 K
- Spontaneous Fluctuation between Symmetric and Buckled Dimer Domains of Si(100) at 80 K
- Atomic Force Microscopy on Imogolite, Aluminosilicate Nanotube, Adsorbed on Au(111) Surface
- Probing subpicosecond dynamics using pulsed laser combined scanning tunneling microscopy
- Direct Attachment of Double-stranded DNA to Gold Surface for Preparation of Nano-structured Devices
- Pseudo-Real Time Observation of the Dynamics of Phase Defect on Si(100) Surface
- Development of Time-Resolved Scanning Thnneting Microscopy in Femtosecond Range
- Finite-difference time-domain calculation with all parameters of Sellmeier's fitting equation for 12-fs laser pulse propagation in a silica fiber
- Measurements of Third-Order Dispersion Effects for Generation of High-Repetition-Rate, Sub-Three-Cycle Transform-Limited Pulses from a Glass Fiber
- Optical pulse compression to 5.0 fs by use of only a spatial light modulator for phase compensation
- Amplitude and Phase Characterization of 5.0 fs Optical Pulses Using Spectral Phase Interferometry for Direct Electric-Field Reconstruction : Optics and Quantum Electronics
- Comparison between theory and experiment of nonlinear propagation for a-few-cycle and ultrabroadband optical pulses in a fused-silica fiber
- Comparison of the Symmetry Breaking in the Surface Molecular Structures of One- and Two-Dimensional Bis (ethylenedithio) tetrathiafulvalene Compounds
- Origin, Cause, and Electronic Structure of the Symmetric Dimers of Si(100) at 80 K
- Generation of intense ultrabroadband optical pulses by induced phase modulation in an argon-filled single-mode hollow Waveguide
- Effect of the Dipole-Dipole Interaction on the Self-Assembly of Cyclodextrin Inclusion Complexes
- Intermittent Automodulation Observed in Fe-3% Si Reeds
- Theory of ultrabroadband optical pulse generation by induced phase modulation in a gas-filled hollow waveguide
- Programmable chirp compensation for 6-fs pulse generation with a prism-pair-formed pulse shaper
- Structure Transformation of the C Defects Observed at Low Temperature (80 K)
- Scanning Tunneling Microscopy on Ordered Self-Assemblies of Cyclodextrin lnclusion Complexes Formed by Substrate-Induced Two-Dimensional Crystal Growth
- Surface Superstructures Fluctuating in the Quasi-One-Dimensional Organic Conductor β-(BEDT-TTF)_2PF_6 Observed by Scanning Tunneling Microscopy ( Scanning Tunneling Microscopy)
- Generation of monocycle-like optical pulses using induced-phase modulation between two-color femtosecond pulses with carrier phase locking
- Phasons Formed on Si(100) Dimer Rows Observed by Scanning Tunneling Microscopy(STM-Si(100))
- Dynamics of Phasoms; Phase Defects Formed on Dimer Rows and Related Structural Changes of the Si(100) Surface at 80 K Studied by Scanning Tunneling Microscopy
- Phase Transition between c(4 × 2) and p(2 × 2) Structures of the Si(100) Surface at 6 K Caused by the Fluctuation of Phase Defects on Dimer Rows due to Dimer Flip-Flop Motion
- Analysis of Time-Resolved Tunnel Current Signal in Sub-Picosecond Range Observed by Shaken-Pulse-Pair-Excited Scanning Tunneling Miscroscopy
- Site-selective silicon adatom desorption using femtosecond laser pulse pairs and scanning tunneling microscopy
- Characteristic structures of the Si(111)-7×7 surface step studied by scanning tunneling microscopy
- Unprecedentedly Fast DNA Hydrolysis by the Synergism of the Cerium(IV)-Praseodymium(III)and the Cerium(IV)-Neodymium(III)Combinations^1
- 分子シャトルの実現 : 走査トンネル顕微鏡による分子操作(分子を超えた形と性質)
- Lattice Matching of α-Cyclodextrin Commensurate with Molybdenum Disulfide Studied by Scanning Tunneling Microscopy
- 4.1 有機材料のSTM