51. Symmetry Energy Effects in a Statistical Multifragmentation Model
- Author
-
Hong-Fei Zhang, Jun-Qing Li, Lei Zhang, Xi-Meng Chen, Mei-Ling Yu, and Yuan Gao
- Subjects
Physics ,Mass distribution ,media_common.quotation_subject ,Nuclear Theory ,General Physics and Astronomy ,Statistical physics ,Multiplicity (chemistry) ,Nuclear Experiment ,Asymmetry ,Excitation ,media_common - Abstract
The symmetry energy effects on the nuclear disintegration mechanisms of the neutron-rich system (A0 = 200, Z0 = 78) are studied in the framework of the statistical multifragmentation model (SMM) within its micro-canonical ensemble. A modified symmetry energy term with consideration of the volume and surface asymmetry is adopted instead of the original invariable value in the standard SMM model. The results indicate that as the volume and surface asymmetries are considered, the neutron-rich system translates to a fission-like process from evaporation earlier than the original standard SMM model at lower excitation energies, and its mass distribution has larger probabilities in the medium-heavy nuclei range so that the system breaks up more averagely. When the excitation energy becomes higher, the volume and surface asymmetry lead to a smaller average multiplicity.
- Published
- 2011