Covariant Quark Representation of Composite Meson Systems and Chiral Symmetry
スポンサーリンク
概要
- 論文の詳細を見る
Assuming spin-independence of the confining force, we give a covariant quark representation of general composite meson systems with definite Lorentz transformation properties. With this representation we are able to deduce automatically the transformation rules of composite mesons for general symmetry operations from those of constituent (exciton) quarks. Applying this, we investigate in particular physical implications of chiral symmetry for meson systems, and point out the possibility of the existence of new meson multiplets.
- 理論物理学刊行会の論文
- 2000-10-25
著者
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ISHIDA Shin
Atomic Energy Research Institute, College of Science and Technology, Nihon University
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ISHIDA Muneyuki
Department of Physics, Tokyo Institute of Technology
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Ishida Muneyuki
Department Of Physics School Of Science And Engineering Meisei University
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Ishida S
Research Institute Of Science And Technology College Of Science And Technology Nihon University
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Maeda T
Department Of Engineering Science Junior College Funabashi Campus Nihon University
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ISHIDA Shin
Research Institute of Science and Technology, College of Science and Technology, Nihon University
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Ishida M
Tokyo Inst. Technol. Tokyo Jpn
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MAEDA Tomohito
Research Institute of Quantum Science, College of Science and Technology, Nihon University
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MAEDA Tomohito
Atomic Energy Research Institute, College of Science and Technology, Nihon University
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Ishida Shin
Atomic Energy Research Institute College Of Science And Technolgy Nihon University
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ISHIDA Shin
Department of Physics and Atomic Energy Research Institute College of Science and Technology, Nihon University
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ISHIDA Shin
College of Science & Technology, Nihon University Tokyo
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ISHIDA Shin
Atomic Energy Research Institute, College of Science and Technology Nihon University
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ISHIDA Shin
Atomic Energy Research Institute, College of Scinence and Technology Nihon University
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MAEDA Tomohito
Atomic Energy Research Institute, College of Science and Technology Nihon University
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ISHIDA Muneyuki
Department of Physics,University of Tokyo
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MAEDA Toshiaki
Department of Mathematical Sciences, Tokyo Denki University
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