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《中国物理C》(英文)编辑部
2024年10月30日

SELFCONSISTENT SEMICLASSICAL CALCULATION WITH EXTENDED SKYRME FORCES AND THE PROPERTIES OF ISOVECTOR GIANT RESONANCES

  • The properties of isovector giant resonances are discussed with the help of the nuclear ground state density profiles obtained from self consiotent semi-classical calculation.Both the component with ΔT3=0 and the components with ΔT3=±1 are considered.The isospin properties of the giant resonances are thereby studied.The results are in good agreement with HF-RPA calculation and experimental evidences.
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  • [1] F. E. Berttrand, Nucl. Phys., A354(1981), 129.[2] G. F. Bertsch et al., Phys. Today., 39(1986), 44.[3] G. E. Goeke and J. Speth, Ann. Rev. Nucl. Phys. Sci., 32(1982), 65.[4] J. S. Dehesa et al., Phys. Rev., C15(1976), 1858.[5] P. Bonche et al., Nucl. Phys., A372(1981), 496.[6] 李国强等,扩展Shyrmeb的自洽半经典计算与原子核静态isoscalav巨共振性质(待发表).[7] N. Auerbach et al., Nucl. Phys., A395(1983), 77.[8] R. Leondardi, Phys. Rev., C14(1976), 385.[9] W. A. Sterrmburg et al., Phys. Rev. Lett., 45(1980). 1839.
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LI Guo-Qiang and XU Gong-Ou. SELFCONSISTENT SEMICLASSICAL CALCULATION WITH EXTENDED SKYRME FORCES AND THE PROPERTIES OF ISOVECTOR GIANT RESONANCES[J]. Chinese Physics C, 1989, 13(6): 544-552.
LI Guo-Qiang and XU Gong-Ou. SELFCONSISTENT SEMICLASSICAL CALCULATION WITH EXTENDED SKYRME FORCES AND THE PROPERTIES OF ISOVECTOR GIANT RESONANCES[J]. Chinese Physics C, 1989, 13(6): 544-552. shu
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Received: 1900-01-01
Revised: 1900-01-01
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SELFCONSISTENT SEMICLASSICAL CALCULATION WITH EXTENDED SKYRME FORCES AND THE PROPERTIES OF ISOVECTOR GIANT RESONANCES

    Corresponding author: LI Guo-Qiang,
  • Nanjing University2 Lanzhou University

Abstract: The properties of isovector giant resonances are discussed with the help of the nuclear ground state density profiles obtained from self consiotent semi-classical calculation.Both the component with ΔT3=0 and the components with ΔT3=±1 are considered.The isospin properties of the giant resonances are thereby studied.The results are in good agreement with HF-RPA calculation and experimental evidences.

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