Yamaji Kunihiko | Electro-technical Laboratory
スポンサーリンク
概要
関連著者
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Yamaji Kunihiko
Electro-technical Laboratory
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Yamaji Kunihiko
Electronical Laboratory
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YAMAJI Kunihiko
Electrotechnical Laboratory,Tsukuba Research Center
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Yamaji Kunihiko
Electrotechnical Laboratory
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Yanagisawa Takashi
Electrotechnical Laboratory
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Yanagisawa Takashi
Electronics and Photonics Research Institute, AIST, Central 2, Tsukuba, Ibaraki 305-8568, Japan
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Yamaji Kunihiko
Institute Of Materials Science University Of Tsukuba:electrotechnical Laboratory
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Kondo Jun
Electro-technical Laboratory
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Yanagisawa T
Nanoelectronics Research Institute Aist
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Yanagisawa Takashi
Nanoelectronics Research Institute Aist
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Yanagisawa T
Aist Ibaraki
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KOIKE Soh
Electrotechnical Laboratory
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Yamaji Kunihiko
Aist Ibaraki
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BANDO Hiroshi
Electrotechnical Laboratory
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Tokumoto M
Electrotechnical Lab. Ibaraki
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Tokumoto H
Electrotechnical Laboratory
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ANZAI Hiroyuki
Electrotechnical Laboratory
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TOKUMOTO Madoka
Electrotechnical Laboratory
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KINOSHITA Nobumori
Electrotechnical Laboratory
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TANAKA Yasumoto
Electrotechnical Laboratory
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Murata Keizo
Osaka City University
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Bando H
Electrotechnical Lab. Tsukuba
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Bando H
Chiba Univ. Chiba Jpn
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Maruyama K
Faculty Of Science Niigata University
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Maruyama Kenji
Graduate School Of Science And Technology Niigata University
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Kadono Ryosuke
Institue Of Materials Structure Science Kek
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Abe S
Electrotechnical Laboratory Tsukuba Research Center
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Abe Shuji
Electrotechnical Laboratory
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SHIMOI Yukihiro
Electrotechnical Laboratory
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Yamaji K
Aist Tsukuba Jpn
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Yamaji Kunihiko
Electrotechnical Laboratory:(new Address From April 1) Nanoelectronics Research Institute Aist Tsuku
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Yamaji Kunihiko
Electrotechnical Laboratory Tsukuba
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ANZAI Hiroyuki
Department of Material Science, Himeji Institute of Technology
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Yanagisawa T
Graduate School Of Science And Technology Niigata University
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Nakanishi T
Inst. Physical And Chemical Res. (riken) Saitama
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Koikegami Shigeru
Jsps:(present Address) Advance Soft And Iis University Of Tokyo
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Koikegami Shigeru
Nanoelectronics Research Institute
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Murata Kazuhiro
Department Of Physics Division Of Material Science Nagoya University
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Murata K
Nagoya Univ. Nagoya
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Murata K
Division Of Molecular Materials Science Graduate School Of Science Osaka City University
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Murata K
Tokyo Medical And Dental Univ. Tokyo Jpn
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Anzai H
Himeji Inst. Technol. Kamigohri Jpn
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Anzai Hiroyuki
Electrotechnical Laboratory Umezono
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Koike Soh
Institute Of Materials Science University Of Tsukuba:electrotechnical Laboratory
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Koike S
Jsps Tokyo
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NAKANISHI Takeshi
Electrotechnical Laboratory
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MIYAZAKI Mitake
Hakodate National College of Technology
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Koike S
Department Of Physics Ii Science University Of Tokyo
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Tokumoto Madoka
Electrotechnical Laboratory Sakura-mura Niihari-gun
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MATSUTANI Katsuhiro
Tokuyama Soda Co. Ltd.
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Anzai H
Department Of Material Science Faculty Of Science Himeji Institute For Technology
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Kinoshita N
Electrotechnical Laboratory
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Konda Jun
Electrotechnical Laboratory
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Kajimura Koji
Electrotechnical Laboratory
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Kawabata Shiro
Nanotechnology Research Institute Aist
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Harigaya K
Electrotechnical Lab. Tsukuba
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Tokumoto M
Nanotechnology Research Institute National Institute Of Advanced Industrial Science And Technology (
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Yamaji K
Nanoelectronics Research Institute Aist
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HARIGAYA Kikuo
Electrotechnical Laboratory
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Shimoi Y
Nanotechnology Research Institute (nri) And Synthetic Nano-function Materials Project (synaf) Nation
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YOSHIHIRO Kazuo
Electrotechnical Laboratory
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Anzai Hiroyuki
Electrotechmical Laboratory
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Kondo Jun
Electrotechnical Laboratory:department Of Applied Physics University Of Tokyo
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Yamaji Kunihiko
Electrotechnical Laboratory Tsukuba Research Center
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YAMAJI Kunihiro
Electrotechnical Laboratory
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Hase Izumi
Electronics and Photonics Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 2, Tsukuba, Ibaraki 305-8568, Japan
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Tokumoto Madoka
Electronics and Photonics Research Institute (EPRI), National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki 305-8568, Japan
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Shimoi Yukihiro
Nanotechnology Research Institute (NRI) and Synthetic Nano-Function Materials Project (SYNAF), National Institute of Advanced Industrial Science and Technology (AIST)
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Miyazaki Mitake
Hakodate National College of Technology, Hakodate, Hokkaido 042-8501, Japan
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Yamaji Kunihiko
Electronics and Photonics Research Institute, AIST, Central 2, Tsukuba, Ibaraki 305-8568, Japan
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Tanaka Yasumoto
Electronics and Photonics Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 2, Tsukuba, Ibaraki 305-8568, Japan
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Kadono Ryosuke
Institute of Materials Structure Science, KEK, Tsukuba, Ibaraki 305-0801, Japan
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Yanagisawa Takashi
Electronics and Photonics Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 2, Tsukuba, Ibaraki 305-8568, Japan
著作論文
- Exchange-Like Integrals Enhancing the Superconducting Transition Temperature in Copper Oxide Compounds
- Superconducting and Normal State Properties of Organic Metals (BEDT-TTF)_2X : V-C Superconductivity : V Organic Superconductors
- Origin of the Field-Induced SDW in the Bechgaard Salts
- Off-Diagonal Wave Function Monte Carlo Studies of Hubbard Model I.
- Superconducting Phase Diagram of the Two-Band Model Investigated by the Exact-Diagonalization Method
- Shift of the SDW Wave Vector in the Transient Region in the Anisotropic 2D Hubbard Model
- Two-Band-Type Superconducting Instability in MgB_2 : Condensed Matter: Electronic Properties, etc.
- On the High-Temperature Susceptibilities of the Two-Dimensional Ferromagnetic Heisenberg Spin Systems
- Electric Field Dependence of Junction Paraconductivity
- Phase Transition of Nearly Two-Dimensional Heisenberg Ferromagnets with Weak Perturbations
- Density Correlation of Classical 1-d Electron Gas with Referecne to the 4K_FAnomaly in TTF-TCNQ
- Pressure- and Anion-Dependences of the SDW Phase Transition in the Bechgaard Salts
- New Lattice Softening Mechanism in the Quasi-One-Dimensional TCNQ Conductors
- Variational Monte Carlo Indications of d-Wave Superconductivity in the Two-Dimensional Hubbard Model
- Zone Boundary Splitting Formed by Spin-Orbit Interaction in La_M_xCuO_4
- Origin of Small-Period Oscillatory Magnetoresistance in Bechgaard Salts : II. LOW TEMPERATURE PROPERTIES OF SOLIDS : Spin Density Waves
- Superconducting Transition of Two-Dimensional Two-Band Systems with Exchange-Like Interaction
- First-Order Phase Transition Boundary between Superconducting and SDW Phases in the Bechgaard Salts
- Magnetic-Field-Induced SDW Phase in the Bechgaard Salts -Dependence on the Transverse Second Harmonics in the Band Energy-
- Semimetallic SDW State in Quasi One-Dimensional Conductors
- Green's-Function Formalism of the One-Dimensional Heisenberg Spin System
- On the Small-Period Oscillation of Magnetoresistance in the Bechgaard Salts
- Oscillatory Magnetoresistance Caused by Field-Dependent Matrix Element for Scattering in Bechgaard Salts
- d-Wave State with Multiplicative Correlation Factors for the Hubbard Model
- Superconducting Condensation Energy of the Two-Dimensional Hubbard Model in the Large-Negative-t' Region
- On the Angle Dependence of the Magnetoresistance in Quasi-Two-Dimensional Organic Superconductors
- Vortices and Chirality in Multi-Band Superconductors