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通过费米子路径积分蒙特卡罗模拟研究有限温度下的均匀电子气

Uniform electron gas at finite temperature by fermionic-path-integral Monte Carlo simulations.

作者信息

Filinov V S, Larkin A S, Levashov P R

机构信息

Joint Institute for High Temperatures, Russian Academy of Sciences, Izhorskaya 13 Bldg 2, Moscow 125412, Russia.

Moscow Institute of Physics and Technology, 9 Institutskiy per., Dolgoprudny, Moscow Region, 141700, Russia.

出版信息

Phys Rev E. 2020 Sep;102(3-1):033203. doi: 10.1103/PhysRevE.102.033203.

Abstract

In this paper we study thermodynamic properties of uniform electron gas (UEG) over wide density and temperature range, using the improved fermionic-path-integral Monte Carlo (FPIMC) method. This method demonstrates a significant reduction of the "fermionic sign problem," which takes place in standard path-integral Monte Carlo simulations of degenerate fermionic systems. We introduce three basic improvements. The first one is the improved treatment of exchange interaction, achieved by the proper change of variables in the path-integral measure. The second improvement is the inclusion of long-range Coulomb effects into an angle-averaged effective potential, as proposed by Yakub and Ronchi [J. Chem. Phys. 119, 11556 (2003)JCPSA60021-960610.1063/1.1624364]. The third improvement is the angle-averaging of an exchange determinant, describing the fermionic exchange interaction not only between particles in the main Monte Carlo cell, but also with electrons in the nearest periodic images. The FPIMC shows very good agreement with analytical data for ideal Fermi gas. For strongly coupled UEG under warm dense matter conditions we compare our total and exchange-correlation energy results with other Monte Carlo approaches.

摘要

在本文中,我们使用改进的费米子路径积分蒙特卡罗(FPIMC)方法,研究了均匀电子气(UEG)在宽密度和温度范围内的热力学性质。该方法显著减少了“费米子符号问题”,这一问题出现在简并费米子系统的标准路径积分蒙特卡罗模拟中。我们引入了三项基本改进。第一项是通过在路径积分测度中适当改变变量,对交换相互作用进行改进处理。第二项改进是按照雅库布和龙奇[《化学物理杂志》119, 11556 (2003)JCPSA60021 - 960610.1063/1.1624364]所提议的,将长程库仑效应纳入角度平均有效势中。第三项改进是对交换行列式进行角度平均,它不仅描述了主蒙特卡罗单元中粒子之间的费米子交换相互作用,还描述了与最近周期镜像中电子的相互作用。FPIMC与理想费米气体的解析数据显示出非常好的一致性。对于温稠密物质条件下强耦合的UEG,我们将我们的总能量和交换关联能量结果与其他蒙特卡罗方法进行了比较。

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