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Correlational and thermodynamic properties of finite-temperature electron liquids in the hypernetted-chain approximation

机译:超网状链近似中有限温度电子液体的相关和热力学性质

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Correlational and thermodynamic properties of homogeneous electron liquids at finite temperatures are theoretically analyzed in terms of dielectric response formalism with the hypernetted-chain (HNC) approximation and its modified version. The static structure factor and the local-field correction to describe the strong Coulomb-coupling effects beyond the random-phase approximation are self-consistently calculated through solution to integral equations in the paramagnetic (spin unpolarized) and ferromagnetic (spin polarized) states. In the ground state with the normalized temperature theta = 0, the present HNC scheme well reproduces the exchange-correlation energies obtained by quantum Monte Carlo (QMC) simulations over the whole fluid phase (the coupling constant r(s) <= 100), i.e., within 1% and 2% deviations from putative best QMC values in the paramagnetic and ferromagnetic states, respectively. As compared with earlier studies based on the Singwi-Tosi-Land-Sjolander and modified convolution approximations, some improvements on the correlation energies and the correlation functions including the compressibility sum rule are found in the intermediate to strong coupling regimes. When applied to the electron fluids at intermediate Fermi degeneracies (theta approximate to 1), the static structure factors calculated in the HNC scheme show good agreements with the results obtained by the path integral Monte Carlo (PIMC) simulation, while a small negative region in the radial distribution function is observed near the origin, which may be associated with a slight overestimation for the exchange-correlation hole in the HNC approximation. The interaction energies are calculated for various combinations of density and temperature parameters ranging from strong to weak degeneracy and from weak to strong coupling, and the HNC values are then parametrized as functions of rs and theta. The HNC exchange-correlation free energies obtained through the coupling-constant integration show reasonable agreements with earlier results including the PIMC-based fitting over the whole fluid region at finite degeneracies in the paramagnetic state. In contrast, a systematic difference between the HNC and PIMC results is observed in the ferromagnetic state, which suggests a necessity of further studies on the exchange-correlation free energies from both aspects of analytical theory and simulation. Published by AIP Publishing.
机译:理论上用超网状链(HNC)近似及其修改版本,根据介电响应形式主义,对均质电子液体在有限温度下的相关性和热力学性质进行了分析。通过求解顺磁(自旋非极化)和铁磁(自旋极化)状态的积分方程,可以自洽计算出静态结构因子和描述超出随机相位近似的强大库仑耦合效应的局部场校正。在归一化温度theta = 0的基态下,本HNC方案很好地再现了通过量子蒙特卡罗(QMC)模拟在整个流体相上获得的交换相关能量(耦合常数r(s)<= 100),也就是说,分别在顺磁性和铁磁性状态下与假定的最佳QMC值有1%和2%的偏差。与基于Singwi-Tosi-Land-Sjolander和改进的卷积近似的早期研究相比,在中等至强耦合状态下,相关能量和相关函数(包括可压缩性和规则)得到了一些改进。当应用于中等费米简并度(θ接近1)的电子流体时,在HNC方案中计算的静态结构因子与通过路径积分蒙特卡罗(PIMC)模拟获得的结果显示出良好的一致性,而在在原点附近观察到径向分布函数,这可能与HNC近似中的交换相关孔略有高估有关。计算密度和温度参数从强到弱简并以及从弱到强耦合的各种组合的相互作用能,然后将HNC值参数化为rs和theta的函数。通过耦合常数积分获得的HNC交换相关自由能与早期结果显示出合理的一致性,包括基于PIMC的在顺磁状态下有限简并的整个流体区域的拟合。相反,在铁磁状态下观察到HNC和PIMC结果之间存在系统差异,这表明有必要从分析理论和模拟两个方面对交换相关自由能进行进一步研究。由AIP Publishing发布。

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