Kawakami Norio | Department Of Applied Physics Osaka University
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概要
関連著者
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Kawakami Norio
Department Of Applied Physics Osaka University
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KAWAKAMI Norio
Department of Applied Physics, Osaka University
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Koga Akihisa
Department Of Applied Physics Osaka University
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KOGA Akihisa
Department of Applied Physics, Osaka University
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Okiji Ayao
Department Of Aplied Physics Faculty Of Engineering Osaka University
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Koga A
Department Of Physics Kyoto University
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Koga Akihisa
Department of Physics, Kyoto University
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Okiji Ayao
Department Of Applied Physics Osaka University
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Imai Yoshiki
Department Of Applied Physics Osaka University
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Fujimoto Satoshi
Department Of Hygiene And Microbiology Faculty Of Veterinary Medicine Hokkaido University
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Kawaguchi Akira
Department Of Applied Physics Osaka University
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Kawaguchi Akira
Department Of Appkied Physics Osaka University
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Ohashi Takuma
Department Of Applied Physics Osaka University
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OHASHI Takuma
Department of Physics, Osaka University
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KUMADA Seiya
Department of Applied Physics,Osaka University
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Kumada Seiya
Department Of Applied Physics Osaka University
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Fujimoto Satoshi
Department Of Physics Kyoto University
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Fujii Tatsuya
Department Of Applied Physics Osaka University
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Suga Sei-ichiro
Department Of Applied Physics Osaka University
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Nakamura A
Department Of Applied Physics Nagoya University
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Fujii Tatsuya
Department Of Pediatrics Shiga Medical Center For Children
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Saito Y
Department Of Applied Physics Osaka University
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Kawakami Norio
Department Of Physics Kyoto University:department Of Applied Physics Osaka University
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Kawakami Norio
Department Of Physics Kyoto University
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SAITO Yasuhiro
Department of Radiology, Asahikawa Medical College
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Saito Yasuhiro
Department Of Applied Physics Osaka University
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Miyashita Satoshi
Department Of Applied Physics Osaka University
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Ohashi T
Department Of Applied Physics Osaka University
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INABA Kensuke
Department of Applied Physics, Osaka University
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Inaba Kensuke
Department Of Applied Physics Osaka University
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Tsukamoto Yasumasa
Department Of Applied Physics Osaka University
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Kumada S
Department Of Applied Physics Osaka University
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Tanaka Yoichi
Department Of Applied Physics Osaka University
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Nakamura Atsunobu
Department Of Applied Physics Osaka University
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齋藤 幸夫
慶応大理工
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OKUNISHI Kouichi
Department of Physics, Niigata University
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藤本 聡
京大理
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Tsukamoto Yasumasa
Department of Cardiovascular Medicine, Osaka University Graduate School of Medicine
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Fujii T
Department Of Applied Physics Osaka University
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斎藤 幸夫
慶応大学理工学部物理
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Fukui Takahiro
Yukawa Institute For Theoretical Physics Kyoto University:jsps Research Fellow
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Fukui Takahiro
Yukawa Institute For Theoretical Physics Kyoto University
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SUGA Sei-ichiro
Department of Applied Physics, Osaka University
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Okunishi Kouichi
Department Of Physics Niigata University
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Okunishi Kouichi
Department Of Physics Faculty Of Science Niigata Univeristy
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FUJIMOTO Satoshi
Department of Physics, Faculty of Science, Kyoto University
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Fujii Takenori
Department Of Applied Physics Faculty Of Science Science University Of Tokyo:(present Address) Cryog
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Yoshioka Tomoaki
Institute For Solid State Physics University Of Tokyo
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Kawakami Norio
Department Of Applied Physics Osaka University:department Of Physics Kyoto University
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Imai Y
Department Of Applied Physics Osaka University
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IMAI Yoshiki
Department of Applied Physics, Osaka University
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YOSHIOKA Takuya
Department of Applied Physics, Osaka University
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Suga Seiichiro
Department of Applied Physics, Osaka University
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Yamashita Makoto
NTT Basic Research Laboratories
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Suwa Y
Research Center For Advanced Science And Technology The University Of Tokyo
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Yoshioka Takuya
Department Of Applied Chemistry Graduate School Of Engineering Tohoku University
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Tsukamoto Y
Osaka Univ. Osaka
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Suga Sei‐ichiro
Department Of Applied Physics Osaka University
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Suga Seiichiro
Department Of Applied Physics Osaka University
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KAWAKAMI Norio
Department of Physics, Kyoto University
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Yamamoto Atsushi
Department of Applied Chemistry, Faculty of Engineering, Utsunomiya University
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Kawakami Norio
Department of Physics, Kyoto University:Department of Applied Physics, Osaka University
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桃井 勉
独立行政法人理化学研究所
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USUKI Tatsuya
Fujitsu Laboratories Ltd.
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Usuki Tatsuya
Department Of Applied Physics Osaka University
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Kawakami N
京大理
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Oguri Akira
Department Of Material Science Osaka City University
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KITA Tomoko
Department of Hospital Pharmacy, School of Medicine, Kobe University
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Oguri Akira
Department Of Applied Physics Nagoya University
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Saito Yahachi
Faculty Of Engineering Mie University
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Koga Akihisa
Department Of Physics Kyoto University:institut Fur Theoretische Physik Universitat Gottingen
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Fukui Takahiro
Institute Of Advanced Energy Kyoto University
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TANAKA Yoichi
Department of Dermatology, Nagasaki University
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Kawaguchi A
Osaka Univ. Osaka
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Okunishi Kouichi
Department Of Physics Faculty Of Science Niigata University
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Kita Tomoko
Department Of Applied Physics Osaka University
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Tada Yasuhiro
Department of Otolaryngology, Fukushima Medical University, School of Medicine
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TSUNETSUGU Hirokazu
Institute of Materials Science, University of Tsukuba
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Tsutomu Momoi
Condensed Matter Theory Laboratory Riken
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Momoi Tsutomu
Condensed Matter Theory Lab Riken
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Momoi Tsutomu
Condensed Matter Theory Laboratory Riken
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Kawaguchi Akira
Department Of Marine Sciences Faculty Of Science University Of The Ryukyus
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Kawaguchi Akira
Laboratory Of Soil Microbiology Division Of Soil Science And Plant Production Department Of Plant Re
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SAKANO Rui
Department of Applied Physics, Osaka University
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PETERS Robert
Institut fur Theoretische Physik, Universitat Gottingen
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PRUSCHKE Thomas
Institut fur Theoretische Physik, Universitat Gottingen
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Sakano Rui
Department Of Applied Physics Osaka University
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Ohashi Takuma
Department Of Physics Osaka University:condensed Matter Theory Laboratory Riken
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Tada Yasuhiro
Department Of Applied Physics Osaka University
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SATO Ryota
Department of Applied Physics, Osaka University
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Pruschke Thomas
Institut Fur Theoretische Physik Universitat Gottingen
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Fujii Mitsuru
Department Of Applied Physics Osaka University
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TOKUONO Shinya
Department of Applied Physics,Osaka University
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Peters Robert
Institut Fur Theoretische Physik Universitat Gottingen
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HIGASHIYAMA Takuji
Department of Applied Physics, Osaka University
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Peters Robert
Department Of Physics Kyoto University
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古賀 章彦
Division Of Biological Science Graduate School Of Science Nagoya University
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Koga Akihiko
Department Of Appkied Physics Osaka University
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Higashiyama Takuji
Department Of Applied Physics Osaka University
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Sato Ryota
Department Of Applied Physics Osaka University
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YANG Sung-Kil
Institute of Physics, University of Tsukuba
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TAKAZAWA Yusuke
Department of Applied Physics, Osaka University
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Takazawa Yusuke
Department Of Applied Physics Osaka University
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Fujimoto Satoshi
Kyoto Univ. Kyoto
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Tsunetsugu Hirokazu
Institute For Solid Physics The University Of Tokyo
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Takushima Yoshihiro
Department Of Applied Physics Osaka University
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Fujii Tatsuya
Departmint Of Applied Physics Osaka University
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Kawakami Norio
Department Of Applied Physics Osaka University : Department Of Physics Kyoto University
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Kawakami Norio
Department Of Applied Physics Osaka University:department Of Material And Life Science Osaka Univers
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Kawakami Norio
Department Of Applied Physics Osaka University:department Of Material And Life Science Osaka Univers
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NAMOTO Kayo
Department of Applied Physics, Osaka University
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Namoto Kayo
Department Of Applied Physics Osaka University
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Yang Sung-kil
Institute Of Physics University Of Tsukuba
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FUJIHARA Yusuke
Department of Applied Physics, Osaka University
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Tokuono Shinya
Department Of Applied Physics Osaka University
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Fujihara Yusuke
Department Of Applied Physics Osaka University
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Okunishi Kouich
Department Of Physics Faculty Of Science Niigata University
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Kawakami Norio
Department Of Material And Life Science Osaka University:department Of Applied Physics Osaka Univers
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Kawakami N
Department Of Applied Physics Osaka University
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Koga Akihisa
Kyoto Univ. Kyoto
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Tanaka Yoichi
Osaka Univ. Osaka
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MAWAKAMI Norio
Department of Applied Physics,Osaka University
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Mawakami Norio
Department Of Applied Physics Osaka University:department Of Material And Life Science Osaka Univers
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Yang S.-K.
Institute of Physics, University of Tsukuba
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Yang S.-k.
Institute Of Physics University Of Tsukuba
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KAWAKAMI Norio
Department of Applied Physics, Osaka University:Department of Physics, Kyoto University
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KAWAGUCHI Akira
Department of Applied Physics, Osaka University
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OKUNISHI Kouichi
Department of Applied Physics, Graduate School of Engineering Osaka University
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Imai Yoshiki
Department of Applied Physics, Osaka University, Suita, Osaka 565-0871
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Yamashita Makoto
NTT Basic Research Laboratories, NTT Corporation, Atsugi, Kanagawa 243-0198
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OHASHI Takuma
Department of Physics, Osaka University:Condensed Matter Theory Laboratory, RIKEN
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Kawakami Norio
Department of Applied Physics, Osaka University, Suita, Osaka 565-0871
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Kawakami Norio
Department of Physics, Kyoto University, Kyoto 606-8502
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Kawakami Norio
Department of Physics, Kyoto University, Kyoto 606-8502, Japan
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Yoshida Tsuneya
Department of Physics, Kyoto University, Kyoto 606-8502, Japan
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Sakaida Masaru
Department of Physics, Kyoto University, Kyoto 606-8502, Japan
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Noda Kazuto
Department of Physics, Kyoto University, Kyoto 606-8502, Japan
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PETERS Robert
Department of Pathology, University of Southern California
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FUJIMOTO Satoshi
Department of Physics,Kyoto University
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TSUKAMOTO Yasumasa/KAWAKAMI
Department of Applied Physics, Osaka University/Department of Applied Physics, Osaka University
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Kawakami Norio
Osaka University, Suita, Osaka 565-0871
著作論文
- Thermoelectric Power of Ce Impurity in Cubic Crystalline Field at Low Temperatures : II. LOW TEMPERATURE PROPERTIES OF SOLIDS : Heavy Electrons : Theory
- Hole-Doping Effects on a Frustrated Spin Ladder
- First-Order Phase Transitions in Frustrated Spin Systems
- Orbital Order in a Quasi-One-Dimensional Spin-Orbital Model
- Hole Dynamics in the Orthogonal-Dimer Spin System (Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
- Hole-Doping Effects on a Two-Dimensional Kondo Insulator (Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
- Hole-Doping Effects on a Two-Dimensional Kondo Insulator
- Numerical Renormalization Group Approach to a Quantum Dot Coupled to Normal and Superconducting Leads(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Thermoelectric Power of the Anderson Model at Low Temperatures
- Finite-Temperature Mott Transition in Two-Dimensional Frustrated Hubbard Models(Interaction and Nanostructural Effects in Low-Dimensional Systems)
- Thermopower of Multiorbital Kondo Effect via Single Quantum Dot System at Finite Temperatures(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Tomonaga's Theory for Collective Motion of Fermions : Basic Concept of One-Dimensional Correlated Electrons(YUKAWA-TOMONAGA CENTENNIAL SYMPOSIUM Progress in Modern Physics)
- Microscopic Mechanism and Pairing Symmetry of Superconductivity in the Noncentrosymmetric Heavy Fermion Systems CeRhSI_3 and CeIrSi_3(Condensed matter : electronic structure and electrical, magnetic, and optical properties)
- Magnetic Properties of the Extended Periodic Anderson Model(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Periodic Anderson Model with Degenerate Orbitals : Linearized Dynamical Mean Field Theory Approach(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Effects of Degenerate Orbitals on the Hubbard Model
- Effects of Degenerate Orbitals on the Hubbard Model
- Mott Transition in the Hubbard Model on Checkerboard Lattice(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Frustrated Ising Model on the Garnet Lattice(Condensed Matter : Structure, Mechanical and Thermal Properties)
- Quantum Phase Transitions in Two-Dimensional Spin Systems with Ladder,Plaquette and Mixed-Spin Structures
- Two-Dimensional Quantum Spin Systems with Ladder and Plaquette Structures
- Mixed-Spin Ladders and Plaquette Spin Chains
- NMR Relaxation Rate for One-Dimensional Multicomponent Spin-Orbital Systems : Condensed Matter: Electronic Properties, etc.
- Dynamical Properties of One-Dimensional Multicomponent Quantum Liquids in Metallic Phase
- Gauge Fluctuations due to Dilute Skyrmions in the Quantum Hall State
- Ground State of Anderson Hamiltonian
- Thermodynamics of the Highly Correlated Degenerate Anderson Model in a Crystal Field
- Ground State of Asymmetric Anderson Hamiltonian
- Low Temperature Thermodynamics of the Degenerate Anderson Model with a Strong Correlation
- Low Temperature Thermodynamics of Asymmetric Anderson Model
- Magnetic Properties of Anderson Model at Zero Temperature
- Supersolid State of Ultracold Fermions in Optical Lattice(Condensed matter: structure and mechanical and thermal properties)
- Mott Transitions in Two-Orbital Hubbard Systems(Yukawa International Seminar 2004 (YKIS2004) Physics of Strongly Correlated Electron Systems)
- Phase Diagram of Orbital-Selective Mott Transitions at Finite Temperatures(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Critical Properties in Photoemmision Spectra for One Dimensional Orbitally Degenerate Mott Insulator
- Critical Properties of Spectral Functions for the 1D Anisotropic t-J Models with an Energy Gap
- A diabatic Ground-State Properties of Spin Chains with Twisted Boundary Conditions
- Higher-Spin Generalization of Fractional Exclusion Statistics
- Correlation Effects on the Double Exchange Model in a Ferromagnetic Metallic Phase : Condensed Matter: Electronic Properties, etc.
- Electron Transport through T-Shaped Double-Dots System
- Kondo Effect in a Quantum Dot with an Even Number of Electrons
- Heavy Quasi-Particles in the Two-Orbital Hubbard Model
- Magnetic and Critical Properties of Alternating Spin Chain with S=1/2,1 in Magnetic Fields
- Parity Effects in Nanoscale Metallic Grain Including a Magnetic Impurity
- Aharonov-Bohm Effect for Parallel and T-shaped Double Quantum Dots
- Variational Monte Carlo Analysis of Hubbard Model with Confining Potential : One-dimensional Fermionic Optical Lattice Systems(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Spin-polarized Transport through Double Quantum Dots(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Kondo Problem and Related One-dimensional Quantum Systems : Bethe Ansatz Solution and Boundary Conformal Field Theory(Kondo Effect-40 Years after the Discovery)
- Bosonization Approachi to the One-Dimensional Kondo Lattice Model at Half Filling:Reexamination
- Phase Diagram for Two-Dimensional Spin Systems with Ladder, Plaquette and Mixed-Spin Structures : Condensed Matter: Electronic Properties, etc.
- Critical Properties in Dynamical Charge Correlation Function for the One-Dimensional Mott Insulator
- One-dimensional S=1 Spin-Orbital Model with Uniaxial Single-Ion Anisotropy(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Competing Spin-Gap Phases in a Frustrated Quantum Spin System in Two Dimensions : Condensed Matter: Electronic Properties, etc.
- Effects of Conduction Electron Correlation on Heavy-Fermion Systems
- Effect of Umklapp Scattering on the Conductance in Quantum Wires
- Exact Critical Exponents for Pseudo-Particles in the Kondo Problem
- 26pYB-2 A spin-selective Kondo-insulator Cooperation between Ferromagnetism and Kondo-effect
- Crystal-Field Effects on Thermoelectric Power and Resistivity for the Ce-Kondo System
- Crystal-Field Effects on Low-Frequency Susceptibility for Ce-Kondo System
- Low-Frequency Susceptibility for Ce-Kondo System in Cubic Crystalline Field : II. LOW TEMPERATURE PROPERTIES OF SOLIDS : Heavy Electrons : Theory
- Heavy Quasi-Particles in the Two-Orbital Hubbard Model
- Nonadiabatic Dynamics of Ultracold Fermions in Optical Superlattices
- Effects of Disorder on Superfluidity in the Attractive Hubbard Model
- Trapped Ultracold Fermions in Double-Well Optical Lattices
- One-dimensional S=1 Spin-Orbital Model with Uniaxial Single-Ion Anisotropy(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Critical Properties of One-Dimensional Electron Systems with 1/γ^α-type Long-Range Interactions : Condensed Matter: Electronic Properties, etc.