Proton and neutron S-1(0) superfluidity in asymmetric nuclear matter


Autoria(s): Zuo, W (Zuo Wei); Lu, GC (Lu Guang-Cheng)
Data(s)

3926

Resumo

The proton and neutron S-1(0), pairing gaps and their isospin dependence in isospin asymmetric nuclear matter have been studied by the isospin dependent Brueckner-Hartree-Fock approach and the BCS theory. We have focused on investigating and discussing the effect of three-body force. The calculated results indicate that as the isospin asymmetry increases, the density range of the S-1(0) neutron superfluidity is narrowed slightly and the maximum value of the neutron pairing gap increases 9 while the density domain for the proton superfluidity enlarges rapidly and the peak value of the proton gap decreases remarkably. The three-body force turns out to affect only weakly the neutron S-1(0) superfluidity and its isospin dependence, i. e., it leads to a small reduction of the neutron S-1(0) paring gap. However, the three-body force not only reduces largely the strength of the proton S-1(0) gaps at high densities in highly asymmetric nuclear matter but also suppresses strongly the density domain for the proton S-1(0) superfluidity phase.

Identificador

http://ir.impcas.ac.cn/handle/113462/5963

http://www.irgrid.ac.cn/handle/1471x/132668

Idioma(s)

中文

Fonte

Zuo, W (Zuo Wei); Lu, GC (Lu Guang-Cheng).Proton and neutron S-1(0) superfluidity in asymmetric nuclear matter,ACTA PHYSICA SINICA ,39264,56(7):3873-3879

Palavras-Chave #isospin asymmetry nuclear matter #proton and neutron superfluidity #three-body force #Bardeen-Cooper-Schripffer (BCS) theory
Tipo

期刊论文