Yagi H | Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
スポンサーリンク
概要
関連著者
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Yagi H
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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Yasumoto H
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Yagi Hideki
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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YAGI Hideki
Media Network Center, Waseda University
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Yagi Hideki
Waseda Univ. Tokyo Jpn
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平沢 茂一
早稲田大学理工学部工業経営学科
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Hirasawa Shigeichi
School Of Creative Science And Eng. Waseda University
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Hirasawa S
Waseda Univ. Tokyo Jpn
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松嶋 敏泰
横浜商科大学
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松嶋 敏泰
早稲田大学大学院理工学研究科
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Arai S
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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ARAI Shigehisa
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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Arai Shigehisa
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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松嶋 敏泰
早稲田大学理工学術院
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TAMURA Shigeo
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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Tamura Shigeo
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Tamura S
Sony Corp. Yokohama Jpn
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Yagi H
Konoshima Chemical Co. Ltd.
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MATSUSHIMA Toshiyasu
Department of Applied Mathematics, Waseda University
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HIRASAWA Shigeichi
Department of Industrial and Management Systems Engineering, School of Creative Science and Engineer
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Hirasawa Shigeichi
Department Of Industrial And Management Systems Engineering School Of Creative Science And Engineeri
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Yagi Hideki
Media Network Center Waseda University
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Tanaka S
International Superconductivity Technol. Center Tokyo Jpn
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YASUMOTO Hideo
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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Yasumoto Hideo
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Matsushima T
Waseda Univ. Tokyo Jpn
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平澤 茂一
サイバー大学IT総合学部
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NUNOYA Nobuhiro
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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Nunoya Nobuhiro
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Nunoya N
Tokyo Inst. Technol. Tokyo Jpn
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HIRASAWA Shigeichi
School of Creative Science and Eng., Waseda University
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HOSOYA Gou
Faculty of Science and Engineering, Waseda University
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Matsushima Toshiyasu
Waseda Univ. Tokyo Jpn
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YAGI Hideki
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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SANO Takuya
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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Ohira Kazuya
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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KOBAYASHI Manabu
Faculty of Engineering, Shonan Institute of Technology
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Yagi Hideki
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Kobayashi M
Faculty Of Engineering Shonan Institute Of Technology
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Sano Takuya
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Murayama T
Integrated Research Institute Tokyo Institute Of Technology
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Hosoya Gou
Faculty Of Science And Engineering Waseda University
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Maruyama Takeo
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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MATSUSHIMA Toshiyasu
School of Fundamental Science and Eng., Waseda University
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Yagi Hideki
Department of Cardiology, Nihon University Surugadai Hospital
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Kojima Tetsuya
Department Of Electrical Engineering School Of Engineering Nagoya Univeristy
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Nakamura M
Institute Of Advanced Material Study And Department Of Molecular Science And Technology Graduate Sch
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Matsushima Toshiyasu
School Of Fundamental Science And Engineering Waseda University
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OHIRA Kazuya
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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MARUYAMA Takeo
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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HAQUE Anisul
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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Tamura S
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Tanaka S
Superconducting Sensor Laboratory Itami Laboratory
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Ohira Kazuya
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Yagi Hideki
Department Of Anatomy Tohoku University School Of Medicine
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Tanaka S
Tokyo Inst. Technol. Tokyo Jpn
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NAKAMURA Madoka
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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KOJIMA Takashi
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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TANAKA Suguru
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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Matsushima Toshiyasu
School Of Fundamental Science And Eng. Waseda University
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Kojima T
Department Of Electrical Engineering School Of Engineering Nagoya Univeristy
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Nakamura M
Toshiba Corp. Yokohama Jpn
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Haque A
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Dhanorm Plumwongrot
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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Maruyama Takeo
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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平澤 茂一
サイバー大学
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Kojima Takashi
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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KOBAYASHI Manabu
Department of Information Science, School of Engineering, Shonan Institute of Technology
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MATSUSHIMA Toshiyasu
Dept. of Industrial & Management Systems Engineering, School of Science and Engineering, Waseda Univ
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HIRASAWA Shigeichi
Dept. of Industrial & Management Systems Engineering, School of Science and Engineering, Waseda Univ
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DHANORM Plumwongrot
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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NAKAYA Hiroyuki
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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HOSOYA Gou
Department of Industrial and Management Systems Engineering, School of Science and Engineering, Wase
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YAGI Hideki
Dept. of Industrial and Management Systems Engineering, Waseda University
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Matsushima Toshiyasu
Department Of Industrial And Management Systems Engineering School Of Science And Engineering Waseda
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Nakaya Hiroyuki
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Hirasawa Shigeichi
Waseda Univ. Tokyo Jpn
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Hirasawa Shigeichi
The Department Of Industrial And Management Systems Engineering Waseda University
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MURANUSHI Kengo
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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Arai Shigehisa
Department Of Electrical And Electronics Engineering Tokyo Institute Of Technology
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NISHIMOTO Yoshifumi
Quantum Nanoelectronics Research Center, Tokyo Institute of Technology
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MIURA Koji
Quantum Nanoelectronics Research Center, Tokyo Institute of Technology
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PLUMWONGROT Dhanorm
Quantum Nanoelectronics Research Center, Tokyo Institute of Technology
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MARUYAMA Takeo
Quantum Nanoelectronics Research Center, Tokyo Institute of Technology
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ARAI Shigehisa
Quantum Nanoelectronics Research Center, Tokyo Institute of Technology
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MIDORIKAWA Hideki
Research Center for Quantum Effect Electronics, Tokyo Institute of Technology
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YAGI Hideki
Center for Frontier Science and Engineering, the University of the Electro-Communications
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YAGI Hideki
the Department of Industrial and Management Systems Engineering, School of Science and Engineering,
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KOBAYASHI Manabu
the Department of Information Science, School of Engineering, Shonan Institute of Technology
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Muranushi Kengo
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
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Hirasawa Shigeichi
Waseda Univ.
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SATO Yoshiyuki
Graduate School of Creative Science and Engineering, Waseda University
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HOSOYA Gou
School of Creative Science and Engineering, Waseda University
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YAGI Hideki
The University of Electro-Communications
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Arai Shigehisa
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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Muranushi Kengo
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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Miura Koji
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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Nishimoto Yoshifumi
Quantum Nanoelectronics Research Center Tokyo Institute Of Technology
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Sato Yoshiyuki
Graduate School Of Creative Science And Engineering Waseda University
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Midorikawa Hideki
Research Center For Quantum Effect Electronics Tokyo Institute Of Technology
著作論文
- GaInAsP/InP Long Wavelength Quantum-Wire Lasers
- [Invited]GaInAsP/InP Long Wavelength Quantum-Wire Lasers
- Room Temperature-Copntinuous Wave Operation of GaInAsP/InP Multiple-Quantum-Wire Lasers by Dry Etching and Regrowth Method
- Low-Threshold Current Density GaInAsP/InP Quantum-Wire Distributed Feedback Lasers Fabricated by Low-Damage Processes
- GaInAsP/InP Strain-Compensated Quantum-Wire Lasers Fabricated by CH_4/H_2 Dry Etching and Organometallic Vapor-Phase-Epitaxial RegroWth : Optics and Quantum Electronics
- Low Threshold Current Density Operation of GaInAsP/InP Lasers with Strain-Compensated Multiple-Layered Wirelike Active Regions
- GaInAsP/InP Multiple-Layered Quantum-Wire Lasers Fabricated by CH_4/H_2 Reactive-Ion Etching
- Low Threshold GaInAsP/InP Distributed Feedback Lasers with Periodic Wire Active Regions Fabricated by CH_4/H_2 Reactive Ion Etching
- Evaluation of Optical Gain Properties of GaInAsP/InP Compressively Strained Quantum-Wire Lasers
- GaInAsP/InP Multiple-Layered Quantum-Wire Lasers Fabricated by CH_4/H_2-Reactive-Ion-Etching
- Temperature Dependence of Internal Quantum Efficiency of 20-nm-Wide GaInAsP/InP Compressively-Strained Quantum-Wire Lasers
- Gain Spectrum Measurement of GaInAsP/InP Compressively-Strained Quantum-Wire Lasers
- Adaptive Decoding Algorithms for Low-Density Parity-Check Codes over the Binary Erasure Channel
- Fingerprinting Codes for Multimedia Data against Averaging Attack
- Density Evolution Analysis of Robustness for LDPC Codes over the Gilbert-Elliott Channel
- A Generalization of the Parallel Error Correcting Codes by Allowing Some Random Errors(Information Theory and Its Applications)
- On Correctable Burst-Erasure Lengths for LDPC Codes with Column Permuted Parity-Check Matrices
- Decoding Performance of Linear Parallel Error Correcting Codes
- Fast Algorithm for Generating Candidate Codewords in Reliability-Based Maximum Likelihood Decoding(Coding Theory,Information Theory and Its Applications)
- A Modification Method for Constructing Low-Density Parity-Check Codes for Burst Erasures(Coding Theory,Information Theory and Its Applications)
- A New Class of Traceability Codes for Digital Fingerprinting(HISC2006)
- A Heuristic Search Algorithm with the Reduced List of Test Error Patterns for Maximum Likelihood Decoding
- A Heuristic Search Method with the Reduced List of Test Error Patterns for Maximum Likelihood Decoding(Coding Theory, Information Theory and Its Applications)
- Fast Algorithm for Generating Candidate Codewords in Reliability-based Maximum Likelihood Decoding
- An Improved Method of Reliability-Based Maximum Likelihood Decoding Algorithms Using an Order Relation among Binary Vectors(Coding Theory)(Information Theory and Its Applications)
- A Method for Reducing Space Complexity of Reliability based Heuristic Search Maximum Likelihood Decoding Algorithms
- Complexity Reduction of the Gazelle and Snyders Decoding Algorithm for Maximum Likelihood Decoding(Coding Theory)(Information Theory and Its Applications)
- A Method for Grouping Symbol Nodes of Group Shuffled BP Decoding Algorithm