The effect of three-body cluster energy on LOCV calculation for hot nuclear and neutron matter

被引:48
|
作者
Moshfegh, HR
Modarres, M
机构
[1] Amir Kabir Univ, Dept Phys, Teheran 15857, Iran
[2] AEOI, Ctr Theoret Phys & Math, Teheran 8486, Iran
关键词
D O I
10.1088/0954-3899/24/4/012
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
The two-body correlation functions, obtained in a lowest-order constrained variational calculation for hot nuclear and neutron mater, with the Reid potential and the explicit inclusion of Delta(1234), are state averaged and used to calculate the three-body cluster energy. The three-body cluster energy is found to vary between about 1 and 2 MeV through and beyond twice the nuclear-matter saturation density for temperatures between 5 and 20 MeV. However, the inclusion of a three-body cluster reduces the nuclear-mater flashing and critical temperatures. A critical temperature of 15.8 MeV and a critical exponent of 0.35 is found. The results of entropy calculations are in good agreement with experimental prediction and other theoretical results. Finally it is shown that by allowing an explicit Delta(1234) degree of freedom through the Reid potential up to and including the three-body clusters, the lowest-constrained variational calculation yields other nuclear- and neutron-matter properties close to the available semi-empirical and experimental data at zero and finite temperatures.
引用
收藏
页码:821 / 829
页数:9
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