Sum Rules of the Multiple Giant Resonance States(Nuclear Physics)
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概要
- 論文の詳細を見る
Various sum rules for multiple giant dipole resonance states are derived. For the triple giant dipole resonance states, the energy-weighted sum of the transition strengths requires a model to be related to those of the single and double giant dipole resonance states. It is also shown that the non-diagonal matrix elements of the double commutator between the dipole operator and the nuclear Hamiltonian give useful identities for the excitation energy and transition strength of each excited state. Using those identities, the relationship between width of the single dipole state and those of the multiple ones is qualitatively discussed. These results, it is stressed, may be useful in the study of other systems than dipole excitations in nuclei, as well as in the problem of anharmonicities of collective motions.
- 理論物理学刊行会の論文
- 2005-10-25
著者
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SUZUKI Toshio
Department of Animal Science, Faculty of Agriculture, Utsunomiya University
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鈴木 敏男
Department Of Applied Physics Fukui University
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鈴木 敏男
福井大・工・応用物理
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SUZUKI Toshio
Research Institute for Fundamental Physics Kyoto University
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鈴木 徹
Department Of Physics Tokyo Metropolitan University
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KURASAWA Haruki
Department of Physics, Faculty of Science, Chiba University
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BORTIGNON Pier
Dipartimento di Fisica, Universita di Milano
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Kurasawa Haruki
Department Of Physics Faculty Of Science Chiba University
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Kurasawa Haruki
Department Of Physics Chiba University
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Suzuki Toshio
Department Of Agronomy Faculty Of Agriculture Tohoku University
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Bortignon Pier
Dipartimento Di Fisica Universita Di Milano:infn Sezione Di Milano
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Bortignon Pier
Dipartimento Di Fisica Universita Degli Studi
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SUZUKI Tsuneo
Shiga Polytechnic College
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SUZUKI Tomoharu
Department of Physics, Nagoya University
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SUZUKI Takehiko
Department of Physics,Shizuoka University
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SUZUKI Toshio
Research Institute for Fundamental Physics, Kyoto University
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SUZUKI Toshio
Department of Applied Physics, Fukui University:RIKEN
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SUZUKI Toshio
Division de Physique Theorique, Institut de Physique Nucleaire
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