Narikiyo Osamu | Department Of Material Physics Faculty Of Engineering Science Osaka University
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概要
関連著者
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Narikiyo Osamu
Department Of Material Physics Faculty Of Engineering Science Osaka University
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Miyake Kazumasa
Department Of Internal Medicine Division Of Gastroenterology Nippon Medical School
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Narikiyo O
Department Of Physics Faculty Of Sciences Kyushu University
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Narikiyo Osamu
Division Of Materials Physics Department Of Physical Science Graduate School Of Engineering Science
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Kawai Hiroshi
Department of Bacteriology, Osaka Dental University
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Narikiyo Osamu
Department Of Physics Kyushu University
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Kawai Hiroshi
Department Of Applied Chemistry Graduate School Of Engineering Tohoku University
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川井 浩史
神戸大学内海域機能教育研究センター
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川井 浩史
神戸大学内海域センター
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Kawai H
Department Of Physics Faculty Of Sciences Kyushu University
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Okuno Y
Kyoto Univ. Kyoto
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Narikiyo Osamu
Department of Material Physics,Faculty of Engineering Science,Osaka University
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SAKIKAWA Wataru
Department of Physics, Kyushu University
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Sakikawa Wataru
Department Of Physics Kyushu University
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Kusunose Hiroaki
Department Of Material Physics Faculty Of Engineering Science Osaka University
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Okuno Yukihiro
Department Of Physics Faculy Of Science Kyoto University:department Of Physical Science Graduate Sch
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KUBOKI Kazuhiro
Department of Physics,Kobe University
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OKUNO Yukihiro
Deaprtmetn of Physics, Faculty of Science Kyoto University
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Fujimoto Satoshi
Department Of Physics Kyoto University
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Narikiyo Osamu
Department Of Physics Faculty Of Sciences Kyushu University
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Narikiyo Osamu
Department Of Physical Science Osaka University
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Narikiyo Osamu
Department Of Material Physics Fasulty Of Engineering Science Osaka University
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Narikiyo Osamu
Department Of Physics Graduate School Of Science Kyushu University
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Narikiyo Osamu
Department Of Material Physics Faculty Of Enginnering Science Osaka University
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Miyake Kazumasa
Department Of Physical Science Graduate School Of Engineering Science Osaka University
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MATSUFUJI Kensuke
Department of Chemistry and Physics of Condensed Matter, Graduate School of Science, Kyushu Universi
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Matsufuji Kensuke
Department Of Chemistry And Physics Of Condensed Matter Graduate School Of Science Kyushu University
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Kuboki Kazuhiro
Department Of Physics Kobe University
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Sakikawa W
Department Of Physics Kyushu University
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Narikiyo Osamu
Kyushu Univ. Fukuoka
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Kawai Hiroshi
Department Of Physics Faculty Of Sciences Kyushu University
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Fujimoto Satoshi
Department Of Hygiene And Microbiology Faculty Of Veterinary Medicine Hokkaido University
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Nakamura Satoshi
Department Of Acoustic And Speech Research Advance Telecommunications Research Institute International
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Narikiyo Osamu
Department of Physics, Kyushu University, Fukuoka 812-8581, Japan
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YAMASHITA Tatsuro
Department of Physics, Kyushu University, Fukuoka 812-8581, Japan
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NARIKIYO Osamu
Department of Physics, Kyushu University
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Narikiyo Osamu
Department of Material Physics, Faculty of Engineering Science, Osaka University
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NARIKIYO Osamu
Department of Material Physics, Faculty of Engineering Science Osaka University
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Narikiyo Osamu
Department of Physics, Kyushu University, Hakozaki, Higashi-ku, Fukuoka 812-8581
著作論文
- Renormalized Perturbation Approach for Examination of Itinerant-Localized Duality Model for Strongly Correlated Electron Systems
- Effect of Spin Fluctuation on Phonon Selfenergy in High-T_c Superconductor
- Multifractal Behavior of the Two-Dimensional Ising Model at Small Spatio-Temporal Scales
- Nested Spin Fluctuation Theory for Magnetotransport in the Normal State of High-T_c Cuprates : Violation of Kohler's Rule
- Comment on"One-Particle Ecxitation of the Two-Dimensional Hubbard Model"
- Metallic Spin Glass in Infinite Dimensions
- Repulsion between Conduction Electrons as a Relevant Perturbation against the Stability of Non-Fermi-Liquid Fixed Point of Multichannel Kondo Problem
- Note on the Spin-Spin Relaxation Time in High-T_c Cuprate Superconductors
- Note on Interpretation of Gap Anisotropy Measured by Plane-Polarized Electronic Raman Spectroscopy in High-T_c Cuprates
- Structural Phase Transition between c(4 × 2) and p(2 × 2) Structures on Si(001) Surface under Observation by Scanning Tunneling Microscopy(Condensed matter: structure and mechanical and thermal properties)
- Vibration of Dimer on Ge(001) Surface Excited Coherently by Tunneling Current of Scanning Tunneling Microscopy(Condensed Matter : Structure, Mechanical and Thermal Properties)
- Vibration of the Dimer on Si (001) Surface Excited by STM Current (Condensed Matter : Structure, Mechanical and Thermal Properties)
- Quasiparticle Dispersion of an Anisotropic Hubbard Model in two Dimensions
- Quasiparticle Weight of the Two-Dimensional Hubbard Model in the t-Matrix Approximation
- Nested Spin-Fluctuation Theory of Anomalous Metallic Phase of V_ O_3
- Itinerant-Localized Duality Picture of Spin Fluctuations in High-T_c Cuprates. : II. A Unified Phenomenology
- Itinerant-Localized Duality Picture of Spin Fluctuations in High-T_c Cuprates. I. Nested Spin-Fluctuation Theory
- Aspect of Spin-Charge Separation Due to Antiferromagnetic Spin Fluctuations in Technically Nested 2D Metals
- Comment on"One-Particle Ecxitation of the Two-Dimensional Hubbard Model"
- Superconductor-Metal-Insulator Crossover in Disordered Thin Films
- A Violation of Matthiessen's Rule in Doped Cerium Heavy Fermion Alloy near Antigerromagnetic Quantum Critical Point
- A Phenomenological Description of the Non-Fermi-Liquid Phase of MnSi
- Enhanced Impurity Scattering due to Quantum Critical Fluctuations : Perturbational Approach
- Multifractal Analysis of the Dynamical Heterogeneity in a Two-Dimensional Supercooled Liquid
- Parity Anomaly of Two-Dimensional Dirac Fermion in a Magnetic Field
- One-Particle Spectral Weight of the Two-Dimensional Hubbard Model in the t-Matrix Approximation
- Note on Interpretation of Gap Anisotropy Measured by Angle-Resolved Photoemission Spectroscopy in Bi_2Sr_2CaCU_2O_
- Resistivity due to Kondo Impurities near Magnetic Quantum Critical Point
- Physical Model for the Evolution of the Genetic Code
- Quasiparticle Dispersion of an Anisotropic Hubbard Model in two Dimensions
- Protein-Folding Nuclei on the Basis of Three-Dimensional Hydrophobicity Profile