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格点核子-核子势在核物质中的相对论效应(英文)
引用本文:胡金牛,申虹,土岐博.格点核子-核子势在核物质中的相对论效应(英文)[J].原子核物理评论,2017,34(3):505-508.
作者姓名:胡金牛  申虹  土岐博
作者单位:1.南开大学物理学院, 天津 300071;
基金项目:国家自然科学基金资助项目(11375089,11405090);中央高校基本科研业务费
摘    要:利用最新的格点核子-核子势研究了核物质中的相对论效应。通过此格点核子-核子势场,首先我们构建一个包括π介子,σ介子以及ω介子的单玻色子交换势。势场中的介子-核子耦合常数以及截断动量通过拟合格点核力得到的核子-核子散射相移确定。随后采用非常成功的第一性原理多体计算方法Brueckner-Hartree-Fock模型,计算了核物质的基本性质。发现对称核物质的状态方程以及饱和性质在非相对论框架和相对论框架中有很明显的区别。在格点核力中,该相对论效应对核物质的结合能提供吸引的贡献。这与采用传统的核力计算得到的结果是相反的。The relativistic effect in nuclear matter is investigated with the latest lattice nucleon-nucleon (NN) potential. A one-boson-exchange potential (OBEP) including three mesons, pion, σ meson and ω meson was constructed based on the lattice NN potential. The meson-nucleon coupling constants and cutoff momentums are determined by fitting the phase shifts of NN scattering from lattice NN potential. The properties of nuclear matter with this OBEP from lattice potential are calculated by one very successful ab initio many-body method, Brueckner-Hartree-Fock model. The equations of state and saturation properties of symmetric nuclear matter present very obvious different behaviors in non-relativistic and relativistic frameworks. The relativistic effect plays attractive contributions with the components of S and D waves in lattice NN potential, which is opposite comparing to the relativistic effect from the conventional NN potential.

关 键 词:格点核子-核子势    相对论效应    核物质
收稿时间:2016-11-20

Relativistic Effects in Nuclear Matter with Lattice NN Potential
HU Jinniu,SHEN Hong,TOKI Hiroshi.Relativistic Effects in Nuclear Matter with Lattice NN Potential[J].Nuclear Physics Review,2017,34(3):505-508.
Authors:HU Jinniu  SHEN Hong  TOKI Hiroshi
Institution:1.School of Physics, Nankai University, Tianjin 300071, China;2.Research Center for Nuclear Physics(RCNP), Osaka University, Ibaraki, Osaka 567-0047, Japan
Abstract:The relativistic effect in nuclear matter is investigated with the latest lattice nucleon-nucleon (NN) potential. A one-boson-exchange potential (OBEP) including three mesons, pion, σ meson and ω meson was constructed based on the lattice NN potential. The meson-nucleon coupling constants and cutoff momentums are determined by fitting the phase shifts of NN scattering from lattice NN potential. The properties of nuclear matter with this OBEP from lattice potential are calculated by one very successful ab initio many-body method, Brueckner-Hartree-Fock model. The equations of state and saturation properties of symmetric nuclear matter present very obvious different behaviors in non-relativistic and relativistic frameworks. The relativistic effect plays attractive contributions with the components of S and D waves in lattice NN potential, which is opposite comparing to the relativistic effect from the conventional NN potential.
Keywords:lattice NN potential  relativistic effect  nuclear matter
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