A Subnuclear Approach to "ψ" Particles
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概要
- 論文の詳細を見る
- 理論物理学刊行会の論文
- 1975-04-25
著者
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Umemura Isao
Department Of Nuclear Engineering Faculty Of Engineering Kyoto University
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Umemura Isao
Department Of Nuclear Engineering Kyoto University
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Maki Ziro
Department of Physics, Kinki University
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Maki Ziro
Research Institute For Fundamental Physics Kyoto University
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Maki Ziro
Reseach Institute For Fundamental Physics Kyoto University
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UEMURA Isao
Department of Nuclear Engineering Kyoto University
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UMEMURA Isao
Department of Nuclear Engineering, Faculty of Engineering Kyoto University
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- A New Scheme for η'-η-Glueball Mixing
- A Quark Model Test by Radiative Processes of η and η' Mesons
- Violation of the Vacuum Symmetry, Decay Constants and the Mixing of "η" Mesons
- Possible C-Nonconserving Interactions and Models of Elementary Particles
- Convexity of the Effective Potential
- Axial-Vector Current Anomaly, Decay Constants, and η-η'-η_c Problem in an N-Flavour Quark Model
- An Improved Mass Formula for 0^-.Mesons in Broken SU(4)-Model for New Particles
- "ψ" Particles in the Quartet Model. II
- "ψ" Particles in the Quartet Model
- η⇾2γDecay and Models of Elementary Particles
- Interactions of Baryons in a Relativistic Composite Model
- Decays of "p-Wave Mesons" and a Relativistic Composite Model
- A Note on the Leptonic Decays of Charmed Mesons
- Mixing Effect between Particles and Resonances
- "x" Particles and Their Radiative Interactions
- Electromagnetic Structure of the Nucleon and Vector Mesons
- Quartet Scheme of Hadrons in Chiral U(4)⨂U(4)
- Fundamental Quartets and Chiral U(4)⊗U(4)
- An Algebraic Approach to the Quantum Theory of Measurements : General and Mathematical Physics
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- Contemplating the Possible Number of Quark-Lepton Generations
- Opening Address
- A Note on the PCAC Relation
- Possible Structures of Gauge Hierarchies in the SU(L) Unification
- π^0→2γ Decays in Relativistic Composite Models
- Preface
- Masses and Decay Constants of Charmed Mesons
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- Probabilistic Interpretation and the Quantum Theory of Measurement. II : General and Mathematical Physics
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