Three-Body Force Rearrangement Contribution to Single Nucleon Potential in Nuclear Matter

  • Within the framework of microscopic Brueckner-Hatree-Fock,the contribution of the three-body force (TBF) rearrangement to the single nucleon potential is calculated. The TBF rearrangement effects on the momentum and the density dependence of the single nucleon potential are investigated. The influence of the TBF rearrangement on the effective mass of nucleon is also discussed. It is shown that the rearrangement contribution of TBF is repulsive and momentum-dependent. The TBF rearrangement effect and its momentum dependence increase rapidly as increasing density and momentum. At high densities and high momenta, the repulsive rearrangement contribution reduces strongly the attraction of the single nucleon potential and enhances considerably the momentum dependence of the single nucleon potential.
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ZUO Wei, LUO Pei-Yan, LI Bao-An, CHEN Ji-Yan and Lombardo U. Three-Body Force Rearrangement Contribution to Single Nucleon Potential in Nuclear Matter[J]. Chinese Physics C, 2006, 30(9): 848-853.
ZUO Wei, LUO Pei-Yan, LI Bao-An, CHEN Ji-Yan and Lombardo U. Three-Body Force Rearrangement Contribution to Single Nucleon Potential in Nuclear Matter[J]. Chinese Physics C, 2006, 30(9): 848-853. shu
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Received: 2005-11-11
Revised: 2005-12-26
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Three-Body Force Rearrangement Contribution to Single Nucleon Potential in Nuclear Matter

    Corresponding author: ZUO Wei,
  • Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China2 Graduate University of Chinese Academy of Sciences, Beijing 100049, China3 Department of Chemistry and Physics, Arkansas State University,USA4 School of Physics and Technology, Lanzhou University, Lanzhou 730000, China5 INFN-LNS, 44 Via S. Sofia, I-95123 Catania, Italy

Abstract: Within the framework of microscopic Brueckner-Hatree-Fock,the contribution of the three-body force (TBF) rearrangement to the single nucleon potential is calculated. The TBF rearrangement effects on the momentum and the density dependence of the single nucleon potential are investigated. The influence of the TBF rearrangement on the effective mass of nucleon is also discussed. It is shown that the rearrangement contribution of TBF is repulsive and momentum-dependent. The TBF rearrangement effect and its momentum dependence increase rapidly as increasing density and momentum. At high densities and high momenta, the repulsive rearrangement contribution reduces strongly the attraction of the single nucleon potential and enhances considerably the momentum dependence of the single nucleon potential.

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