Symmetry energy and isovector giant dipole resonance in finite nuclei


Autoria(s): Cao, LG (Cao Li-Gang); Ma, ZY (Ma Zhong-Yu)
Data(s)

2008

Resumo

We study the relationship between the properties of the isovector giant dipole resonance of finite nuclei and the symmetry energy in the framework of the relativistic mean field theory with six different parameter sets of nonlinear effective Lagrangian. A strong linear correlation of excited energies of the dipole resonance in finite nuclei and symmetry energy at and below the saturation density is found. This linear correlation leads to the symmetry energy at the saturation density at the interval 33.0MeV <= S(po) <= 37.0 MeV. The comparison to the present experimental data in the soft dipole mode of (132) Sn constrains approximately the symmetry energy at p = 0.1 fm(-3) at the interval 21.2MeV similar to 22.5 MeV. It is proposed that a precise measurement of the soft dipole mode in neutron rich nuclei could set up an important constraint on the equation of state for asymmetric nuclear matter.

Identificador

http://ir.impcas.ac.cn/handle/113462/5571

http://www.irgrid.ac.cn/handle/1471x/132364

Idioma(s)

英语

Fonte

Cao, LG (Cao Li-Gang); Ma, ZY (Ma Zhong-Yu) .Symmetry energy and isovector giant dipole resonance in finite nuclei, CHINESE PHYSICS LETTERS ,2008,25 (5 ):1625-1628

Palavras-Chave #MEAN-FIELD THEORY #RANDOM-PHASE-APPROXIMATION #EXOTIC NUCLEI #NEUTRON RADII #PARAMETRIZATION #ISOTOPES #SKIN
Tipo

期刊论文