Matsuyama Tetsuya | Department Of Physics And Electronics Faculty Of Engineering Osaka Prefecture University
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概要
- 同名の論文著者
- Department Of Physics And Electronics Faculty Of Engineering Osaka Prefecture Universityの論文著者
関連著者
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Matsuyama Tetsuya
Department Of Physics And Electronics Faculty Of Engineering Osaka Prefecture University
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TSUBATA Mitsuru
Nagoya University
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Maruyama Takafumi
Department Of Electrical And Electronic Engineering Tottori University
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香田 忍
名古屋大工
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Matsuoka Toshimasa
Department Of Electronic Engineering Osaka University
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Matsunaka Toshiyuki
Department Of Physics & Electronics Osaka Prefecture University
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Tawada Masafumi
Department Of Physics Nagoya University:(present Address)kek National Laboratory For High Energy Phy
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松岡 辰郎
名古屋大 大学院工学研究科
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Matsuyama T
Department Of Physics And Electronics Faculty Of Engineering Osaka Prefecture University
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香田 忍
名大院工
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松岡 辰郎
名古屋大学大学院工学研究科
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Matsuoka Takashi
Atsugi Electrical Communication Laboratory Nippon Telegraph And Telephone Public Corporation
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Matsuoka Tatsuro
Institute Of Industrial Science University Of Tokyo:(present Address)department Of Chemical Engineer
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松岡 辰郎
名大院工
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香田 忍
名古屋大学大学院工学研究科
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堀中 博道
大阪府立大学工学研究科電子物理工学分野
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HORINAKA Hiromichi
Department of Physics and Electronics, Faculty of Engineering, Osaka Prefecture University
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野村 浩康
東京電機大学理工学部
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Wada K
Osaka Prefecture University
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山口 毅
名大院工
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Horinaka Hiromichi
Osaka Prefecture Univ. Sakai Jpn
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Wada K
Hokkaido Univ. Sapporo Jpn
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堀中 博道
大阪府立大学工学研究科
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OKUMI Shoji
Graduate School of Science, Nagoya University
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MATSUYAMA Tetsuya
Department of Physics and Electronics, Faculty of Engineering, Osaka Prefecture University
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Okumi S
Nagoya Univ. Nagoya Jpn
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WADA Kenji
Department of Physics and Electronics, Osaka Prefecture University
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Horinaka Hiromichi
Department Of Electrical Engineering College Of Engineering University Of Osaka Prefecture
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Kato Takayoshi
Reseach Institute Of Electronics Shizuoka University
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前林 正弘
名城大農
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Koda Shinobu
Department Of Chemical Engineering Nagoya University
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Kato T
Graduate School Of Engineering Nagoya University
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NAKANISHI Tsutomu
Department of Physics, Nagoya University
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Wada Kenji
Department Of Hydrocarbon Chemistry Faculty Of Engineering Kyoto University
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OKUMI Shoji
Department of Physics, Nagoya University
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Matsuoka Tatsuro
Department Of Molecular Design And Engineering Graduate School Of Engineering Nagoya University
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和田 健司
大阪府立大学工学研究科
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香田 忍
名古屋大学
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Nomura H
Toshiba Corp. Yokohama Jpn
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SAKA Takashi
Department of Electrical and Electronic Engineering, Daido Institute of Technology
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Horinaka Hiromichi
Department Of Physics & Electronics Osaka Prefecture University
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朝倉 義幸
本多電子
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宮下 隼基
名古屋大工
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Mizuta Masashi
Department Of Physics And Electronics Faculty Of Engineering Osaka Prefecture University
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Mizuta Masashi
Fundamental Research Laboratries Nec Corporation
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松岡 辰郎
名大院・工
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香田 忍
名大院・工
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TOGAWA Kazuaki
Department of Physics, Nagoya University
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Takeuchi Yasunori
Kek National Laboratory For High Energy Physics
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Takeuchi Y
Institute For Materials Research Tohoku University
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中村 祥宜
名古屋大学大学院工学研究科
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松岡 辰郎
名古屋大院工
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香田 忍
名古屋大院工
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Omori Tsunehiko
Kek National Laboratory For High Energy Physics
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Kato Takayoshi
Research Institute Of Electronics Shizuoka University
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Koshikawa Takanori
Fundamental Electronics Research Institute Academic Frontier Promotion Center Osaka Electro-communic
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Matsunaka T
Research Laboratory Aloka Co. Ltd.
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Mizuta Masashi
Fundamental Reseach Laboratories Nec Corporation
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朝倉 義幸
本多電子(株)
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Kato T
Ashikaga Inst. Technol. Tochigi
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Kato T
Optoelectronics Technology Research Lab. Ibaraki
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BABA Toshio
Fundamental Research Laboratories, NEC Corporation
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Yoshioka Masahiro
NMIJ AIST
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Yoshioka Masakazu
Kek National Laboratory For High Energy Physics
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NAKAMURA Yoshiki
Department of Neurosurgery, National Hospital Organization Tokyo Medical Center
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ISEKI Maki
Department of Electrical and Electronic Engineering, Daido Institute of Technology
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KATO Toshihiro
Optoelectronic Device Development Group, New Business Development Center, Daido Steel Co. Ltd.
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Horinaka Hiromichi
College Of Engineering University Of Osaka Prefecture
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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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宮下 隼基
名古屋大学大学院工学研究科
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水谷 嘉孝
名古屋大学大学院工学研究科
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MATSUOKA Tatsuro
Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University
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KODA Shinobu
Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University
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前林 正弘
名大院工
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Aoyagi Hideki
Stanford Linear Accelerator Center Stanford University:(present Address) Nagoya University
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Aoyagi Hideki
College Of Engineering University Of Osaka Prefecture:(present Address)japan Synchrotron Radiation R
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YOSHINO Katsumi
Faculty of Engineering, Osaka University
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Yoshino Katsumi
Faculty Of Engineering Osaka University
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CHO Yoshio
Faculty of Computer Science and System Engineering, Okayama Prefectural University
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KURIHARA Yoshimasa
KEK, High Energy Accelerator Research Organization
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OMORI Tsunehiko
KEK, High Energy Accelerator Research Organization
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Moriya Tadashi
Tokyo Metropolitan Univ.
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HAYASHI Shigenori
Faculty of Engineering, Osaka University
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和田 健司
大阪府立大学 大学院工学研究科
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Moriya T
Institute Of Material Science University Of Tsukuba
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KATO Toshihiro
Research and Development Lab., Daido Steel Co., Ltd.
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前林 正弘
名大院・工
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TAWADA Masafumi
Department of Physics, Nagoya University
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TAKEUCHI Yasunori
KEK, National Laboratory for High Energy Physics
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YOSHIOKA Masakazu
KEK, National Laboratory for High Energy Physics
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Hayashi Shigenori
Faculty Of Engineering Osaka University
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Takahashi Chikako
Faculty Of Science Nagoya University
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Moriya Tsuyoshi
Institute Of Material Science University Of Tsukuba
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Hayashi S
Saga Univ. Saga Jpn
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安田 啓司
名古屋大学大学院工学研究科
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竹内 佑輝
名古屋大学大学院工学研究科
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KISHINO Katsumi
Department of Engineering and Applied Sciences, Sophia University
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山田 元
名大・院工
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Kishino Katsumi
Department Of Electrical And Electronic Engineering Sophia University
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Horinaka Hiromichi
Osaka Prefecture University
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Matsunaka Toshiyuki
Osaka Prefecture University
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Ura Tomoaki
Osaka Prefecture University
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Mukaiyama Takashi
Osaka Prefecture University
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Nakamura Naoki
Osaka Prefecture University
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Wada Kenji
Osaka Prefecture University
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NAKANISHI Tsutomu
Faculty of Pharmaceutical Sciences,Setsunan University
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木村 慎一
Jsr株式会社
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SUZUKI Chihiro
Department of Neurology, Tohoku University Graduate School of Medicine
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Kobayashi Tsuyoshi
Department of Internal Medicine II, University of Yamanashi
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古田 亮一
名古屋大学大学院工学研究科
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桜井 孝至
Department Of Molecular Design And Engineering Graduate School Of Engineering Nagoya University
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松岡 辰郎
名古屋大工
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後藤 久典
名古屋大学大学院工学研究科
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宮下 隼基
名大院工
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朝倉 義幸
本多電子株式会社
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前林 正弘
名古屋大学大学院工学研究科
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MAEBAYASHI Masahiro
Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University
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前林 正弘
名大
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水谷 嘉孝
名古屋大院工
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遠藤 将
名大院工
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五十野 善信
長岡技科大工
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Kaneto Keiichi
Faculty Of Engineering Osaka University
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和田 健司
阪府大・工
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Hayashi Shinji
Department Of Electrical And Electronic Engineering Faculty Of Engineering Kobe University
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本田 武司
日揮
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IWADE Tomoo
Department of Physics and Electronics, Osaka Prefecture University
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MATSUNAKA Toshiyuki
ALOKA Co., Ltd.
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大塚 慎也
名大院・工
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Matsuyama Tetsuya
Department Of Physics And Electronics Osaka Prefecture University
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Sakurai Takashi
Department Of Astronomy The University Of Tokyo
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HANGYO Masanori
Research Center for Superconducting Materials and Electronics, Osaka University
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YOSHIOKA Hiroyuki
Department of Neurosurgery, Graduate School of Biomedical Sciences, Hiroshima University
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NISHINAKA Fumihiko
Department of Physics & Electronics, Osaka Prefecture University
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NAKATANI Yumi
Department of Physics & Electronics, Osaka Prefecture University
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SATO Hideki
Department of Reparative Materials, Field of Tissue Engineering, Institute for Frontier Medical Scie
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桝田 幸弘
名大院工
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長尾 敦記
名大工
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松岡 辰郎
Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University
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香田 忍
Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University
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野村 浩康
Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University
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BABA Toshio
Silicon System Research Laboratories, NEC Corporation
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Nakatani Yumi
Department Of Physics & Electronics Osaka Prefecture University
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Takahashi Chikako
Department of Cardiovascular Medicine, Tohoku University Graduate School of Medicine
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橋谷 龍紀
JSR株式会社
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西尾 壽浩
JSR株式会社
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松岡 辰郎
名大・院工
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香田 忍
名大・院工
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Kishino Katsumi
Department Of Electrical Electronics Engineering Sophia University
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TAKAHASHI Chikako
Faculty of Pharmaceutical Sciences, Chiba University
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NISHITANI Kazuharu
Accelerator Technology Corporation
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KURIHARA Yoshimasa
National Laboratory for High Energy Physics (KEK) Tsukuba
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TAKEUCHI Yasunori
National Laboratory for High Energy Physics (KEK) Tsukuba
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YOSHIOKA Masakazu
National Laboratory for High Energy Physics (KEK) Tsukuba
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OMORI Tsunehiko
National Laboratory for High Energy Physics (KEK)
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NAKANISHI Tsutomu
Nagoya University
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OKUMI Syooji
Nagoya University
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TAWADA Mmasabumi
Nagoya University
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TOGAWA Kazuaki
Nagoya University
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ALLEY Raymond
Stanford Linear Accelerator Center, Stanford University
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CLENDENIN James
Stanford Linear Accelerator Center, Stanford University
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FRISCH Josef
Stanford Linear Accelerator Center, Stanford University
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MULHOLLAN Gregory
Stanford Linear Accelerator Center, Stanford University
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SAEZ Pablo
Stanford Linear Accelerator Center, Stanford University
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SCHULTZ David
Stanford Linear Accelerator Center, Stanford University
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TANG Huan
Stanford Linear Accelerator Center, Stanford University
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WITTE Klaus
Stanford Linear Accelerator Center, Stanford University
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OKUMI Shoji
Faculty of Science, Nagoya University
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TSUBATA Mitsuru
Faculty of Science, Nagoya University
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TAWADA Masafumi
Faculty of Science, Nagoya University
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TOGAWA Kazuaki
Faculty of Science, Nagoya University
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TANIMOTO Yasunori
Faculty of Science, Nagoya University
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Hayashi Shigenori
Faculty Of Engineering Osaka University:central Research Laboratories Matsushita Electric Industrial
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Hayashi Shigenori
Ulsi Process Technology Development Center Semiconductor Company Matsushita Electronics Corporation
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Takahashi Chikako
Department Of Cardiovascular Medicine Tohoku University Graduate School Of Medicine
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Takahashi Chikako
Faculty Of Pharmaceutical Sciences Chiba University
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Nishinaka Fumihiko
Department Of Physics & Electronics Osaka Prefecture University
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Maebayashi Masahiro
Department Of Molecular Design And Engineering Graduate School Of Engineering Nagoya University
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Tang Huan
Stanford Linear Accelerator Center Stanford University
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Saez Pablo
Stanford Linear Accelerator Center Stanford University
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Witte Klaus
Stanford Linear Accelerator Center Stanford University
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Frisch Josef
Stanford Linear Accelerator Center Stanford University
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Schultz David
Stanford Linear Accelerator Center Stanford University
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Alley Raymond
Stanford Linear Accelerator Center Stanford University
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Clendenin James
Stanford Linear Accelerator Center Stanford University
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Mulhollan Gregory
Stanford Linear Accelerator Center Stanford University
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Suzuki Chihiro
Department Of Physics Nagoya University
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Kato Toshihiro
Research And Development Lab. Daido Steel Co. Ltd.
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水谷 嘉孝
名大院工
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長山 功江
名大院工
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FUJIMURA Shunsuke
Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University
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NOMURA Hiroyasu
Laboratory of Chemistry, Department of Natural Science, School of Science and Technology, Tokyo Denk
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ZHEN Wendong
College of Engineering, University of Osaka Prefecture
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WADA Kenji
College of Engineering, University of Osaka Prefecture
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KATO Toshihiro
New Materials Research Laboratory, Daido Steel Co., Ltd.
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TSUBATA Mitsuru
Department of Physics, Nagoya University
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KAMIYA Yoshihiro
Toyota Technical Institute
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TANIMOTO Yasunori
Department of Physics, Nagoya University
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AOYAGI Hideki
Department of Physics, Nagoya University
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NAKAMURA Shinsuke
Department of Physics, Nagoya University
著作論文
- 液晶-四塩化炭素混合系における超音波回折光偏光状態(物性,一般)
- Crystalline Structure of Heteroepitaxial GaAs and GaAsP Layers Grown on GaAs Substrates Investigated by X-ray Diffraction : II. Strain in GaAsP Layer
- Crystalline Structure of Heteroepitaxial GaAs and GaAsP Layers Grown on GaAs Substrates Investigated by X-ray Diffraction : I. Mosaic Structure
- P1-41 Spectroscopic imaging by using ultrasound velocity change caused by optical absorption(Poster session 1)
- 弾性表面波法によるポリビニルアルコールゲルの弾性挙動に対する溶媒組成の影響に関する研究(物性,一般)
- 3P1-1 液晶等方相での超音波光回折(ポスターセッション)
- 弾性表面波法を利用したゲル状態変化に関する研究 : ゲルの乾燥過程や溶媒交換過程での応用(物性,一般)
- 23pYC-4 モード結合理論による電解質溶液のモル伝道度極小の出現機構(液体・溶液,領域12,ソフトマター物理,科学物理,生物物理)
- 23pRJ-17 高濃度電解質溶液の電気伝導度の理論計算 : 流体力学相互作用の効果(溶液・液体,領域12,ソフトマター物理,化学物理,生物物理)
- 21aTC-11 多価電解質水溶液のMHzからGHz領域に現れる緩和の理論的解析(溶液・液体,領域12,ソフトマター物理,化学物理,生物物理)
- 光-超音波・音響 分子配向の協同性の小さい異方性分子からなる液体における超音波回折光の偏光状態
- 超音波を利用した高分子の分解・重合 (特集 ソノケミストリー)
- M-1 カロリーメトリーによるソノリアクター用超音波振動子の評価(ソノ・ケミストリー)
- A-1 液晶等方相における超音波光回折の偏光状態(超音波物性・材料、フォノン)
- 液体中における超音波による配向誘起と回折光の偏光状態(一般・音波物性)
- 液体中における超音波による配向誘起と回折光の偏光状態
- 化学的定量法による円筒型超音波反応器の評価(ソノケミストリー,超音波キャビテーションの科学と応用論文特集)
- Surface Wave Velocity in Methylcellulose Hydrogel in the Drying Process
- 表面波速度測定によるハイドロゲルの弾性的性質の評価
- P3-71 KI定量法による円筒型超音波反応器の評価(ポスターセッション3(概要講演))
- J-4 異方性分子からなる液体における超音波回折光の偏光状態(光-超音波・光音響法)
- 20aXG-2 流動下にある流体の分子配向に関する分子動力学法による研究(溶液・液体,過冷却液体・ガラス,領域12(ソフトマター物理,化学物理,生物物理))
- 超音波基礎 液体中の超音波誘起複屈折の正弦成分の直接観察
- 単一気泡の化学作用 (特集 いろいろつかえるソノケミストリー(2))
- P3-5 音響的手法による補強剤配合SBRの評価(ポスターセッション3(概要講演))
- Near-Infrared Tomography by Detection of Ultrasonic Pulse Shift for Tissue Diagnosis
- 13pTH-5 一般化ランジェバン理論に基づく不均一場下の液体のダイナミクスの理論(化学物理・理論, 領域 12)
- B-3 棒状ミセル水溶液におけるミセルモノマー交換反応による超音波緩和の観測(超音波物性・材料)
- 31pZD-5 液体の輸送物性に対する「異常な」圧力効果に関する理論的研究
- コヒーレントブリュアン散乱法による液体の超音波測定
- P1-B-14 弾性表面波によるガラス基板上の高分子薄膜の物性評価(超音波物性・材料,ポスターセッション1(概要講演))
- 研究ニュース 弾性表面波測定によるメチルセルロースゲルのずり弾性率測定
- PD08 超音波顕微鏡を用いた炭酸カルシウム分散PVC評価について(ポスターセッションI)
- Quantum-efficiency Dependence of the Spin Polarization of Photoemission from a GaAs-AlGaAs Superlattice
- A High Polarization and High Quantum Efficiency Photocathode Using a GaAs -AlGaAs Superlattice
- Highly Polarized Electron Source Using InGaAs-GaAs Strained-Layer Superlattice
- P1-18 液体の超音波誘起複屈折における非線形成分の検出(ポスターセッション1(概要講演))
- P2-15 低温領域におけるヒドロゲル中の音速度測定と水挙動研究への適用(ポスターセッション2,ポスター発表)
- P2-14 高分子複合材料の音波物性に及ぼす無機充填材の効果(ポスターセッション2,ポスター発表)
- Effect of Molecular Weight and Degree of Substitution on the Shear Modulus of Methyl Cellulose Gel by Means of Surface Wave Method (Short Note)
- New-Type Photocathode for Polarized Electron Source with Distributed Bragg Reflector
- PA18 表面波測定によるPAAゲルの物性評価(基礎・物性,ポスターセッション2)
- Electrical Transport and Electron Spin Resonance in Electron-Beam-Irradiated Polyacetylene in the Presence of SF_6 Gas
- Electrical and Optical Properties of Polythiophene Irradiated with Electron Beam in the Presence of SF_6 and Their Application as Radiation Detector
- PA6 過冷却状態におけるテトラエチレングリコールの局所構造と構造緩和との相関(ポスターセッション2)
- High Spin Polarization of Conduction Band Electrons in GaAs-GaAsP Strained Layer Superlattice Fabricated as a Spin-Polarized Electron Source
- High Luminescence Polarization of InGaAs-AlGaAs Strained Layer Superlattice Fabricated as a Photocathode of Spin-Polarized Electron Source : Optical Properties of Condensed Matter
- Spin-Dependent Luminescence of Highly Polarized Electrons Generated by Two-Photon Absorption in Semiconductors : Optical Properties of Condensed Matter
- Spin Relaxation of Electrons in Graded Doping Strained GaAs-Layer Photocathode of Polarized Electron Source
- Depolarized Light Scattering of Liquid Crystals with Addition of Carbon Tetrachloride in the Isotropic Phase
- P1-7 弾性表面波法によるメチルセルロースゲルのずり弾性率に対する置換度と分子量の効果の研究(ポスターセッション1,ポスター発表)
- Suppression of Side Fringes in Low-Coherence Interferometric Measurements Using Gain- or Loss-Modulated Multimode Laser Diodes
- Optical Imaging in Scattering Medium by Detection of Ultrasonic Phase Shift Due to Light Illumination
- Influence of Nonlinear Gain Saturation on the Time-Bandwidth Product of Optical Pulse from a Gain-Switched Semiconductor Laser
- Linear and Nonlinear UItrasonically Induced Birefringence in Polymer Solutions
- The Vibrational-Translational Energy Transfer in Binary Mixtures: Influence of the Vibrational Mode Close to the Lowest Mode in Group Relaxation
- Local Structures and Structural Relaxation Processes in Supercooled Tetra(ethylene glycol)
- B-4 高分子溶液における超音波誘起複屈折に対する超音波放射圧の効果
- 超音波誘起複屈折からみた巨大分子のダイナミクス
- 超音波光回折法による高周波レオ・オプティクス測定装置の開発とその応用(物性,一般)
- 3Pb1-1 超音波光回折を用いた高周波レオ・オプティクススペクトロスコピー(ポスターセッション)
- 高周波レオオプティクス法による液晶非液晶混合系における並進配向結合に関する研究(物性,一般)
- P11 ベシクル水溶液に対する超音波照射効果の研究(ポスターセッション)
- P15 超音波照射によるエマルションの油水分離促進(ポスターセッション)
- P9 水溶液中におけるメチルセルロースの超音波切断に関する研究(ポスターセッション)
- A13 円筒型ソノリアクターのソノケミカル効率に対する周波数と液高さの影響