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Variational study for the equation of state of asymmetric nuclear matter at finite temperatures

机译:有限温度下不对称核物质状态方程的变分研究

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摘要

An equation of state (EOS) for uniform asymmetric nuclear matter (ANM) is constructed at zero and finite temperatures by the variational method starting from the nuclear Hamiltonian that is composed of the Argonne v18 and Urbana IX potentials. At zero temperature, the two-body energy is calculated with the Jastrow wave function in the two-body cluster approximation which is supplemented by Mayer's condition and the healing-distance condition so as to reproduce the result by Akmal, Pandharipande and Ravenhall. The energy caused by the three-body force is treated somewhat phenomenologically so that the total energy reproduces the empirical saturation conditions. The masses and radii of neutron stars obtained with the EOS are consistent with recent observational data. At finite temperatures, thermodynamic quantities such as free energy, internal energy, entropy, pressure and chemical potentials are calculated with an extension of the method by Schmidt and Pandharipande. The validity of the frozen-correlation approximation employed in this work is confirmed as compared with the result of the fully minimized calculation. The quadratic proton-fraction-dependence of the energy of ANM is confirmed at zero temperature, whereas the free energy of ANM deviates from the quadratic proton-fraction-dependence markedly at finite temperatures. The obtained EOS of ANM will be an important ingredient of a new nuclear EOS for supernova numerical simulations.
机译:通过变分方法,从由Argonne v18和Urbana IX势构成的哈密顿核开始,采用变分法构造了均匀非对称核物质(ANM)的状态方程(EOS)。在零温度下,利用贾斯特罗波函数在两体簇近似中计算两体能量,并用梅耶条件和愈合距离条件进行补充,从而用阿克马尔(Akmal),潘达里潘德(Pandharipande)和拉文霍尔(Ravenhall)再现结果。由三体力产生的能量在某种现象学上得到了处理,因此总能量重现了经验饱和条件。用EOS获得的中子星的质量和半径与最近的观测数据一致。在有限的温度下,通过Schmidt和Pandharipande扩展了该方法,可以计算出热力学量,例如自由能,内能,熵,压力和化学势。与完全最小化的计算结果相比,可以确定这项工作中使用的冻结相关近似的有效性。在零温度下确认了ANM能量的二次质子分数相关性,而在有限温度下,ANM的自由能明显偏离了二次质子分数相关性。获得的ANM EOS将成为用于超新星数值模拟的新型核EOS的重要组成部分。

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