Kubo Ryogo | Department Of Physics Faculty Of Science And Technology Keio University
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概要
関連著者
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Kubo Ryogo
Department Of Physics Faculty Of Science And Technology Keio University
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Kubo Ryogo
Department Of Physics Faculty Of Science University Of Tokyo
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TAKAGAHARA Toshihide
Department of Electronics and Information Science, Kyoto Institute of Technology
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Hanamura Eiichi
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Hanamura Eiichi
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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Tanimura Yoshitaka
Department Of Chemistry Graduate School Of Science Kyoto University
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Takagahara Toshihide
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Kubo Ryogo
Department of Physics,Faculty of Science,University of Tokyo
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Hanamura Eiichi
Department of Applied Physics,Faculty of Engineering,University of Tokyo
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Tanimura Yoshitaka
Department of Chemistry, University of Rochester
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Kubo Ryogo
Department Of Physics University Of Tokyo
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TAKANO Hiroshi
Department of Physics,Keio University
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Toyozawa Yutaka
Department Of Applied Physics Tokyo University
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Fukuyama Hidetoshi
Department Of Applied Physics Faculty Of Science Tokyo University Of Science
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Takano Hiroshi
Department Of Cardiovascular Surgery Osaka Police Hospital
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Takano Hiroshi
Department Of Applied Physics Osaka University
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Fukuyama Hidetoshi
Department of Applied Physics and Research Institute for Science and Technology, Tokyo University of Science, Shinjuku, Tokyo 162-8601, Japan
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OHNISHI Kouhei
Department of System Design Engineering, Faculty of Science and Technology, Keio University
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OHNISHI Kouhei
Keio University
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Hasegawa Hiroshi
Department Of Cardiovascular Science And Medicine Chiba University Graduate School Of Medicine
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Kubo Ryogo
Keio Univ.
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Kubo R
Department Of Physics Faculty Of Science And Technology Keio University
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ENDO Takahiko
Department of Physics,Faculty of Science and Technology,Keio University
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KAMOHARA Shiro
Department of Physics,Faculty of Science and Technology,Keio University
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SHIMIZU Mitsuaki
Department of Physics,Faculty of Science and Technology,Keio University
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FUJII Masataka
Department of Physics,Faculty of Science and Technology,Keio University
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Chikama Terumi
Department Of Physics Faculty Of Science University Of Tokyo
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Chikama Terumi
Department Of Physics Faculty Of Science University Of Tokyo:fujitsu Laboratories Ltd.
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Natori Kenji
Department Of Physics Faculty Of Science University Of Tokyo
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Natori Kenji
Keio Univ.
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Endo Takahiko
Department Of Fermentation Tachnology Faculty Of Engineering Hiroshima University
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Endo Takahiko
Department Of Physics Faculty Of Science And Technology Keio University
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Fujii Masataka
Department Of Physics Faculty Of Science And Technology Keio University
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Kamohara Shiro
Department Of Physics Faculty Of Science And Technology Keio University
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Shimizu Mitsuaki
Department Of Physics Faculty Of Science And Technology Keio University
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Ohnishi Kouhei
Department Of Integrated Design Engineering Keio University
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Kubo Ryogo
Department Of Physics Keio University
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Izuyama Takeo
Department Of Physics University Of Tokyo
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SAIKAWA Kazuhiko
Department of Physics,Faculty of Science,Shinshu University
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TOMITA Kazuhisa
Department fo Physics, Faculty of Science, Kyoto University
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Furukawa Hirotaka
Communication Media Research Group Research Laboratories Ntt Docomo Inc.
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IIYAMA Noriko
Department of System Design Engineering, Keio University
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IIYAMA Noriko
Keio University
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Saikawa Kazuhiko
Department Of Physics Faculty Of Science Shinshu University
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KIM DUK-JOO
Department of Physics, University of Tokyo
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Kawabata Arisato
Department Of Physics Gakushuin University
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Kawabata Arisato
Department Of Physics University Of Tokyo
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Kim Duk-joo
Department Of Physics University Of Tokyo:materials Theory Group Department Of Electrical Engineerin
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Kim Duk-joo
Department Of Physics University Of Tokyo
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OBATA Yukio
Department of Physics, University of Tokyo
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TERANISHI Nobukazu
Department of Physics,University of Tokyo
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Suzuki Tetsuhiro
Microelectronics Res.Labs.,NEC Corporation
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Obata Yukio
Department Of Physics Faculty Of Science University Of Tokyo
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Suzuki Tetsuhiro
Microelectronics Res.labs. Nec Corporation
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Hashitsume Natsuki
Department Of Physics Faculty Of Science Ochanomizu University
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Hashitsume Natsuki
Ochanomizu University
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Tanimura Yoshitaka
Department Of Physics Faculty Of Science And Technology Keio University
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Tanimura Yoshitaka
Department Of Physics Keio University
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Kubo Ryogo
Department Of Physics University Of Pennsylvania:(present) Department Of Physics University Of Tokyo
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Nakajima Sadao
Physical Institule Nagoya University
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Yokota Mario
Department of Applied Physics, Osaka City University
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Ohnishi Kouhei
Department Of Electrical Engineering Keio University
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YAMAJI Kunihiko
Department of Physics, University, of Tokyo
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Yamaji Kunihiko
Department Of Physics University Of Tokyo
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OHATA Nagao
Department of Physics, University of Tokyo
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Ohata Nagao
Department Of Physics Aoyama Gakuin University
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Izuyama Takeo
Department Of Physics Faculty Of Science University Of Tokyo
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Yokota Mario
Department Of Applied Physics Faculty Of Engineering Osaka City University
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Yokota Mario
Department Of Physics University Of Tokyo
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Teranishi Nobukazu
Department Of Physics University Of Tokyo
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Suzuki Masuo
Department Of Applied Physics Science University Of Tokyo
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Hasegawa Hiroshi
Department Of Applied Physics Department Of Physics University Of Tokyo
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Hasegawa Hiroshi
Department Of Physics University Of Tokyo
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Hasegawa Hiroshi
Department Of Adme And Toxicology For Screening Developmental Research Laboratories Shionogi & Co. Ltd.
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Chikawa Terumi
Department of Physics,Faculty of Science,University of Tokyo
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KUBO Ryogo
Department of Physics, University of Tokyo
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TOYOZAWA Yutaka
Department of Applied Physics, University of Tokyo
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KUBO Ryogo
Department of Physics, University, of Tokyo
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Izuyama T.
Department of Physics, Faculty of Science University of Tokyo
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Kubo Ryozo
Department of Physics, University of Tokyo
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Suzuki Masuo
Department of Physics, Faculty of Science, University of Tokyo, Tokyo
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Kubo Ryogo
Department of Electronics and Electrical Engineering, Keio University
著作論文
- Long-Time Spin Relaxation in Zero-Field
- Performance Analysis of a Three-Channel Control Architecture for Bilateral Teleoperation with Time Delay
- Optical Response of a Randomly Modulated Two-Level Atom
- Band Theoretical Interpretation of Neutron Diffraction Phenomena in Ferromagnetic Metals
- Second Order Optical Processes in a Localized Electron-Phonon System : -Transient Response-
- Second Order Optical Processes in a Localized Electron-Phonon System : -Stationary Response-
- Stochastic Models of Intermediate State Interaction in Second Order Optical Processes : Transient Response
- Stochastic Models of Intermediate State Interaction in Second Order Optical Processes : Stationary Response. : II
- Stochastic Models of Intermediate State Interaction in Second Order Optical Processes : Stationary Response. : I
- Note on the Paramagnetic Susceptibility and the Gyromagnetic Ratio in Metals
- On Impurity Pinning of One-Dimensional Charge Density Waves
- Second Order Optical Process of a Three-Level System in Contact with a Nearly Gaussian-Markoffian Noise Bath
- Generalized Cumulant Expansion Method
- Two-Time Correlation Functions of a System Coupled to a Heat Bath with a Gaussian-Markoffian Interaction
- Time-Dependent Spectrum of a Two-Level System Coupled to a Heat Bath Driven by Pulsed Laser
- Time Evolution of a Quantum System in Contact with a Nearly Gaussian-Markoffian Noise Bath
- Second Order Optical Process of A Randomly Modulated Multi-Level Atom
- A General Theory of Magnetic Resonance Absorption
- Statistical Theory of Linear Polymers : V. Paraffine-like Chain
- Electronic Properties of Fine Metallic Particles. : II. Plasma Resonance Absorption
- Note on the Stochastic Theory of Resonance Absorption
- A Note on the Orbital Diamagnetism of Nearly Free Electrons
- Large Elastic Deformation of Rubber
- Wigner Representation of Quantum Operators and Its Applications to Electrons in a Magnetic Field
- Interband Effects on Magnetic Susceptibility. : II. Diamagnetism of Bismuth
- Electrical Conduction in a Narrow Band. I. : Moment Method
- Interband Effect on Magnetic Susceptibility. : I. A Simple Two-Band Model
- Statistical-Mechanical Theory of Irreversible Processes.II. : Response to Thermal Disturbance
- Brownian Motion of Spins
- Quantum Theory of Galvanomagnetic Effect. I. : Basic Considerations
- The Method of Generating Function Applied to Radiative and Non-Radiative Transitions of a Trapped Electron in a Crystal
- Statistical-Mechanical Theory of Irreversible Processes : I. General Theory and Simple Applications to Magnetic and Conduction Problems
- Dynamics of the Ising Model near the Critical Point. I
- Applicaiton of the Method of Generating Function to Radiative and Non-Radiative Transitions of a Trapped Electron in a Crystal