HOSOMATSU Haruo | Devices Laboratory, Yokogawa Electric Co., Ltd.
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概要
関連著者
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HOSOMATSU Haruo
Devices Laboratory, Yokogawa Electric Co., Ltd.
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Hosomatsu Haruo
Devices Laboratory Yokogawa Electric Co. Ltd.
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MAEDA Minoru
Graduate School of Pharmaceutical Sciences, Kyushu University
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Maeda Minoru
Optical Measurement Technology Development Co. Ltd.
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HIRATA Takaaki
Optoelectronics Laboratory, Yokogawa Electric Co.
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Hirata T
Sophia Univ. Tokyo Jpn
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HOSOMATSU Haruo
Optical Measurement Technology Development Co., Lid.,Central Research Laboratory
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Maeda M
Tokyo Tanabe Co. Ltd. Tokyo Jpn
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Maeda Minoru
Graduate School Of Pharmaceutical Sciences Kyushu University
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HIRATA Takaaki
Optical Measurement Technology Development Co., Lid.,Central Research Laboratory
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SUEHIRO Masayuki
Optoelectronics Laboratory, Yokogawa Electric Co.
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SUEHIRO Masayuki
Optical Measurement Technology Development Co., Lid.,Central Research Laboratory
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Suehiro Masayuki
Optoelectronics Laboratory Yokogawa Electric Co.
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YAMADA Noriyuki
Optical Measurement Technology Development Co., Lid.,Central Research Laboratory
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YAMADA Noriyuki
Biochemical Research Laboratory, Nitto Denko Co.,
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Yamada Noriyuki
Biochemical Research Laboratory Nitto Denko Co.
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Hihara Mamoru
Optoelectronics Laboratory Yokogawa Electric Corporation
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HIHARA Mamoru
Optical Measurement Technology Development Co., Lid.,Central Research Laboratory
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Yamada N
Av Core Technology Development Center Matsushita Electric Industrial Co. Ltd.
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NAKANO Yoshiaki
Department of Surgery, NTT West Osaka Hospital
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Luo Yi
State Key Laboratory On Integrated Optoelectronics Tsinghua National Laboratory For Information Scie
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Cao Hong-li
Department Of Electronic Engineering University Of Tokyo
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TADA Kunio
Department of Electronic Engineering, The University of Tokyo
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Tada Kunio
Department Of Electronic Engineering Faculty Of Engineering University Of Tokyo
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Nakano Yoshiaki
Research Center For Advanced Science And Technology Univ. Of Tokyo
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Luo Yi
National Integrated Optoelectronics Laboratory Department Of Electronic Engineering Tsinghua Univers
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Luo Yi
University Of Pennsylvania School Of Veterinary Medicine Department Of Clinical Studies
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Nakano Y
Research Center For Advanced Science And Technology The University Of Tokyo
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Nakano Yoshiaki
Department Of Surgery Ntt West Osaka Hospital
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LUO Yi
Devices Laboratory, Yokogawa Electric Co., Ltd.
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DOBASHI Machio
Devices Laboratory, Yokogawa Electric Co., Ltd.
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YAMAGUCHI Akira
Optical Measurement Technology Development Co., Ltd.
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HIRATA Takaai
Optical Measurement Technology Development Co., Ltd., Central Research Laboratory
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Dobashi Machio
Devices Laboratory Yokogawa Electric Co. Ltd.
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Nakano Yoshiaki
Department Of Electrical Engineering And Information Systems The University Of Tokyo
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Tada Kunio
Department Of Electronic Engineering Faculty Of Engineering The University Of Tokyo
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Yamaguchi Akira
Optical Measurement Technology Development Co. Ltd.
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Tada Kunio
Department of Electrical and Computer Engineering, Graduate School of Engineering, Yokohama National University, 79-5 Tokiwadai, Hodogaya-ku, Yokohama 240-8501, Japan
著作論文
- Fabrication of 780-nm AlGaAs Tunable Distributed Bragg Reflector Laser Diodes by Using Compositional Disordering of a Quantum Well
- Optimization and Characterization of 780 nm AlGaAs Quantum Well DFB Laser Diodes
- Absorptive-Grating Gain-Coupled Distributed-Feedback MQW Lasers with Low Threshold Current and High Single-Longitudinal-Mode Yield
- Photonie Integrated Circuit Combining Two GaAs Distributed Bragg Reflector Laser Diodes for Generation of the Beat Signal
- Fabrication of First-Order Gratings for GaAs/AlGaAs LD's by EB Lithography
- GaAs/AlGaAs GRIN-SCH-SQW DBR Laser Diodes with Passive Waveguides Integrated by Compositional Disordering of the Quantum Well Using Ion Implantation
- Basic Properties, Linewidth Enhancement Factor and Spectral Linewidlh of SQW Laser Diodes Emitting in the 780 nm Region
- Sub-MHz Linewidth GaAs/AlGaAs GRIN-SCH-SQW DFB Laser Diodes with First-Order Gratings Fabricated by Electron Beam Lithography
- A Novel GRIN-SCH-SQW Laser Diode Monolithically Integrated with Low-Loss Passive Waveguides