TSUE Yasuhiko | Departamento de Fisica,Universidade de Coimbra
スポンサーリンク
概要
関連著者
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TSUE Yasuhiko
Departamento de Fisica,Universidade de Coimbra
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Yamamura Masatoshi
Department Of Pure And Applied Physics Faculty Of Engineering Science Kansai University
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YAMAMURA Masatoshi
Faculty of Engineering ,Kansai University
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Providencia Joao
Departamento De Fisica Universidade De Coimbra
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Yamamura Masatoshi
Faculty Of Engineering Kansai University
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Tsue Yasuhiko
Department Of Physics Kyoto University
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PROVIDENCIA Joao
Deparatmento de Fisica, Universidate de Coimbra
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PROVIDENCIA Joao
Departamento de Fisica,Universidade de Coimbra
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TSUE Yasuhiko
Physics Division, Faculty of Science, Kochi University
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Providencia Constanca
Departamento De Fisica Universidade De Coimbra
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Tsue Y
Physics Division Faculty Of Science Kochi University
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TSUE Yasuhiro
Department of Physics, Kochi University
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PROVIDENCIA Constancia
Departmento de Fisica, Universidade de Coimbra
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PROVIDENCIA Joao
Departamento de Fisica, Unversidade de Coimbra
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TSUE Yasuhiko
Department of Physics, Kyoto University
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PROVIDENCIA Constanca
Departament de Fisica, Universidade de Coimbra
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PROVIDENCIA Constanca
Departmento de Fisica, Universidade de Coimbra
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Kuriyama Atsushi
Faculty Of Engineering Kansai University
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Tsue Yasuhiko
Physics Division Faculty Of Science Kochi University
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PROVIDENCIA Constanca
Dpartamento de Fisica, Universidade de Coimbra
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Kuriyama A
Faculty Of Engineering Kansai University
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PROVIDENCIA Joao
Dpartamento de Fisica, Universidade de Coimbra
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PROVIDENCIA Joao
Department of Fisica, Universidade de Coimbra
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PROVIDENCIA Joao
Departament de Fisica, Universidade de Coimbra
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Providencia C
Departmento De Fisica Universidade De Coimbra
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Providencia C
Univ. Coimbra Coimbra Prt
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YAMAMURA Masatoshi
Depertment of Physics, Kyoto University
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YAMAMURA Masatoshi
Department of Pure and Applied Physics, Faculty of Engineering Science, Kansai University
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Constanca Providencia
Departamento De Fisica Universidade De Coimbra
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Yamamura Masatoshi
Department Of Physics Kyoto University
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YAMAMURA Masatoshi
Department of Physics, Kyoto University : Faculty of Engineering, Kansai University
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Da Providencia
Departamento De Fisica Centro De Fisica Computacional Faculdade De Ciencias E Tecnologia Universidade De Coimbra
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PROVIDENCIA Joao
Departmento de Fisica, Universidade de Coimbra
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YAMAMURA Masatoshi
Faculty of Engineering, Kansai University
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Providencia Joao
Departmento De Fisica Universidade De Coimbra
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KURIYAMA Atsushi
Faculty of Engineering, Kansai University
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Da Providencia
Universidade De Coimbra Coimbra Prt
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Da Providencia
Departamento De Fisica Universidade De Coimbra
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Fujiwara Yoshikazu
Department Of Clinical Gene Therapy Osaka University Graduate School Of Medicine
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FUJIWARA Yoshikazu
School of Physics, University of Minnesota
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FUJIWARA Yoshikazu
Research Institute for Fandamental Physics, Kyoto University
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KURIYAMA Atushi
Faculty of Engineering, Kansai University
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KURIYAMA Atsushi
Faculty of Engineering, Kansai Universidade
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KURIYAMA Atsushi
Department of Physics, Kyusyu University
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KURIYAMA Atsushi
Department of Physics, Kyushu University /Department of Physics, Kyoto University
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KURIYAMA Atushi
Department of Physics, Kyushu University
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FUJIWARA Yoshikazu
Institute of Theoretical Physics, University of Regensburg : Department of Physics, Kyoto University
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FUJIWARA Yoshikazu
Department of Physics, Kyoto University
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Fujiwara Yoshihisa
Department Of Physics Tokyo Institute Of Technology
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da PROVIDENCIA
Departamento de Fisica, Universidade de Coimbra
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da Providencia
Faculty of Engineering, Kansai University
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TSUE Yasuhiko
Department of Material Science, Kochi University
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Azuma Nobuyuki
Department Of Cardiology St. Marianna University School Of Medicine
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Azuma Nobuyuki
Department Of Aerospace Engineering Nagoya University
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Azuma Nobuyuki
Department Of Physics Kochi University
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Fukui Takahiro
Department of Cardiology
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Fukui T
Department Of Physics Kyoto University
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FUKUI Takashi
Musashino Electrical Communication Laboratory,NTT
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PROVIDENCIA Constanga
Departamento de Fisica, Universidade de Coimbra
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Matsuda Kazuki
Physics Division Faculty Of Science Kochi University
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PROVIDENCIA DA
Faculty of Engineering, Kansas University
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PROVIDENCIA joao
Faculty of Engineering, Kansai University
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TSUE Yasuhiko
Center for Computational Physics, Departamento de Fisica, Universidade de Coimbra
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YAMAMURA Masatoshi
Faculty of Engineering,Kansai University
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MATSUDA Kazuki
Physics Division, Faculty of Science, Kochi University
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TSUE Yasuhiko
Center for Computational Physics, Departamento de Fisica, Universidade de Coimbra:Physics Division, Faculty of Science, Kochi University
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TSUE Yasuhiko
Department of Physics, Kochi University
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TSUE Yasuhiko
Department of Physics,Kochi University
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AZUMA Nobuyuki
Department of Physics, Kochi University
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FUKUI Takahiro
Department of Physics, Kyoto University
著作論文
- First-Order Quark-Hadron Phase-Transition in a NJL-Type Model for Nuclear and Quark Matter : The Case of Symmetric Nuclear Matter(Nuclear Physics)
- A Refined Numerical Result on the First Excitation Energy in the Two-Level Pairing Model(Nuclear Physics)
- Classical and Quantal Descriptions of Small Amplitude Fluctuations around Equilibriums in the Two-Level Pairing Model(Nuclear Physics)
- The Lipkin Model in Many-Fermion System as an Example of the su(1, 1) ⊗ su(1, 1)-Algebraic Model(Nuclear Physics)
- A Note on the Two-Level Pairing Model Obeying the su (2) ⊗ su (2)-Algebra : Re-formation in Terms of the su (1, 1) ⊗ su (1, 1)-Algebra(Nuclear Physics)
- Note on Many-Quark Model with su(4) Algebraic Structure(Nuclear Physics)
- On the Exact Eigenstates and the Ground States Based on the Boson Realization for Many-Quark Model with su(4) Algebraic Structure(Nuclear Physics)
- Many-Quark Model with su(4) Algebraic Structure : An Example of Analytically Soluble Many-Fermion System(Nuclear Physics)
- Semi-Classical Approach to the Two-Level Pairing Model : Various Aspects of Phase Change(Nuclear Physics)
- Time-Dependent Variational Approach to (1+1)-Dimensional Scalar-Field Solitons in Terms of Squeezed Coherent States : Nuclear Physics
- Time-Dependent Variational Approach in Terms of Squeezed Coherent States : Nuclear Physics
- Quasi-Spin Squeezed State for Lipkin Model : Nuclear Physics
- Variational Approach to the Chiral Phase Transition in the Linear Sigma Model
- Analysis of Dynamical Effects on Geometric Phase by Means of Time-Dependent Variational Principle : Nuclear Physics
- Three Forms of Coherent States in the su(2)-Spin System and Related Classical Counterparts : Nuclear Physics
- Even-Odd Effect on the Thermal Equilibrium State of the Pairing Model. II : Mean Field Approximation and Renormalized Distribution
- Even-Odd Effect on the Thermal Equilibrium State of the Pairing Model. I : Comparison between Canonical and Grand Canonical Ensembles
- On the Color-Singlet States in Many-Quark Model with the su(4)-Algebraic Structure. III : Transition from the Quark-Triplet to the Quark-Pair Phase(Nuclear Physics)
- On the Color-Singlet States in Many-Quark Model with the su(4)-Algebraic Structure. II : Determination of Ground-State Energies(Nuclear Physics)
- On the Color-Singlet States in Many-Quark Model with the su(4)-Algebraic Structure. I : Color-Symmetric Form(Nuclear Physics)
- A Possible Boson Realization of Generalized Lipkin Model for Many-Fermion System : The su(M+1)-Algebraic Model in Non-Symmetric Boson Representation
- Pairing Model and Mixed State Representation. II : Grand Partition Function and Its Mean Field Approximation
- Pairing Model and Mixed State Representation. I : Thermal Equilibrium State
- Time-Evolution of the Cohererut and the Squeezed States of Many-Body Systems Based on the Basic Idea of the Boson Mapping and the TDHF Method
- Imperfect Bose System and Its Mixed State Representation. I : Thermal Equilibrium State of Imperfect Bose System
- A Possible Description of Classical Motion in Quantal Systems
- Note on the Minimum Weight States in the su(2)-Algebraic Many-Fermion Model : Extension of the Role of the Auxiliary su(2)-Algebra(Nuclear Physics)
- Background of the su(2)-Algebraic Many-Fermion Models in the Boson Realization : Construction of Minimum Weight States by Means of an Auxiliary su(2)-Algebra and Its Related Problems(Nuclear Physics)
- Color-Singlet Three-Quark States in the su(4)-Algebraic Many-Quark Model : An Example of the su(4) ⨂ su(4)-Model(Nuclear Physics)
- Re-Formation of Many-Quark Model with the su(4)-Algebraic Structure in the Schwinger Boson Realization : Reconsideration in the Original Fermion Space(Nuclear Physics)
- Modification of the Conventional Holstein-Primakoff Boson Representation for the su(1,1)-Algebra and Its Classical Counterpart
- Three Forms of Boson Expansions for the su(2)-Spin System and Their c-Number Counterparts : Nuclear Physics
- Thermal Effect in Lipkin Model. II : Grand Partition Function and Mean Field Approximation
- Note on Boson Expansion and Boson Coherent State for the su(2)-Spin System
- Thermal Effect in Lipkin Model. I : Thermal Equilibrium State and Phase Transition : Nuclear Physics
- Description of Thermal Effects in su(1, 1)-Algebraic Model Derived from Nuclear su(2) -Model
- Investigation of the Minimal Uncertainty Appearing in the Quasi-Spin Coherent and the Quasi-Spin Squeezed State of Many-Fermion System : The Case of Many-Nucleon System in Pairing Correlation : Nuclear Physics
- Thermal Effects and Dissipation in su(1, 1)-Algebraic Model by Means of Time-Dependent Variational Approach : Nuclear Physics
- Effective Potential Approach to Quark Ferromagnetization in High Density Quark Matter(Nuclear Physics)
- The BCS-Bogoliubov and the su(2)-Algebraic Approach to the Pairing Model in Many-Fermion System : The Quasiparticle in the Conservation of the Fermion Number(Nuclear Physics)
- A Role of the Quasiparticle in the Conservation of the Fermion Number : An Example Illustrative of the Deformation of the Cooper Pair(Nuclear Physics)
- A Possible Description of Many-Body System Composed of Three Kinds of Boson Operators : The su(2,1)-Boson Model : Neuclear Physics