Kawanishi Tetsuya | National Institute Of Information And Technology
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概要
関連著者
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KAWANISHI Tetsuya
National Institute of Information and Communications Technology
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Kawanishi Tetsuya
National Institute Of Information And Technology
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Kawanishi Tetsuya
National Inst. Of Information And Technol. (nict) Tokyo Jpn
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Shinada Satoshi
National Institute of Information and Communications Technology, New Generation Network Research Cen
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Nunes Luis
National Institute Of Information And Communications Technology
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Tsuchiya Masahiro
National Institute Of Information And Communications Technology
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Liang Tak‐keung
Chinese Univ. Hong Kong Hong Kong Sar Chn
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YAMAMOTO Naokatsu
National Institute of Information and Communications Technology
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AKAHANE Kouichi
National Institute of Information and Communications Technology
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Higurashi Eiji
Res. Center For Advanced Sci. And Technol. The Univ. Of Tokyo
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SUGA Tadatomo
University of Tokyo, RCAST
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Suga Tadatomo
School Of Engineering The Univ. Of Tokyo
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Shinada Satoshi
National Institute Of Information And Communications Technology New Generation Network Research Cent
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Shinada Satoshi
National Institute Of Information And Technology
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LIANG Tak-Keung
National Institute of Information and Communications Technology
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TAKIGAWA Ryo
University of Tokyo
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HIGURASHI Eiji
University of Tokyo
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Takigawa Ryo
School Of Engineering The University Of Tokyo
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Akahane Kouichi
National Inst. Information And Communications Technol. (nict) Tokyo Jpn
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Tsuchiya Masahiro
National Defense Academy
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Yamamoto Naokatsu
National Inst. Information And Communications Technol. (nict) Tokyo Jpn
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Suga Tadatomo
University Of Tokyo Department Of Precision Engineering School Of Engineering
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Shinada Satoshi
National Institute of Information and Communications Technology
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SUGA Tadatomo
University of Tokyo
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Shinada Satoshi
National Institute of Information and Communication Technology
著作論文
- Novel Functionality and Material for Si-Photonics: Two-Photon Absorption Switching and Antimonide Hetero-Genius Epitaxy(Evolution of Microwave and Millimeter-Wave Photonics Technology)
- Low-Temperature Au-to-Au Bonding for LiNbO_3/Si Structure Achieved in Ambient Air(Micro/Nano Fabrication,Microoptomechatronics)