Importance of self-consistency in relativistic continuum random-phase approximation calculations


Autoria(s): Yang, D; Cao, LG; Tian, Y; Ma, ZY
Data(s)

2010

Resumo

A fully consistent relativistic continuum random phase approximation (RCRPA) is constructed, where the contribution of the continuum spectrum to nuclear excitations is treated exactly by the single-particle Green's function technique. The full consistency of the calculations is achieved that the same effective Lagrangian is adopted for the ground state and the excited states. The negative energy states in the Dirac sea are also included in the single-particle Green's function in the no-sea approximation. The currents from the vector meson and photon exchanges and the Coulomb interaction in RCRPA are treated exactly. The spin-orbit interaction is included naturally in the relativistic frame. Numerical results of the RCRPA are checked with the constrained relativistic mean-field theory. We study the effects of the inconsistency, particularly the currents and Coulomb interaction in various collective multipole excitations.

Identificador

http://ir.impcas.ac.cn/handle/113462/7843

http://www.irgrid.ac.cn/handle/1471x/132998

Idioma(s)

英语

Fonte

Yang, D; Cao, LG; Tian, Y; Ma, ZY.Importance of self-consistency in relativistic continuum random-phase approximation calculations,PHYSICAL REVIEW C ,2010,82(5):54305

Palavras-Chave #MEAN-FIELD THEORY #GIANT-RESONANCES #SUM-RULES #NUCLEI #STATES #MODEL
Tipo

期刊论文