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Spin-resolved correlations in the warm-dense homogeneous electron gas

机译:温致密均匀电子气体中的旋转相关的相关性

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We have studied spin-resolved correlations in the warm-dense homogeneous electron gas by determining the linear density and spin-density response functions, within the dynamical self-consistent mean-field theory of Singwi et al. The calculated spin-resolved pair-correlation function g(sigma sigma') (r) is compared with the recent restricted path-integral Monte Carlo (RPIMC) simulations due to Brown et al. [Phys. Rev. Lett. 110, 146405 (2013)], while interaction energy Eint and exchange-correlation free energy F-xc with the RPIMC and very recent ab initio quantum Monte Carlo (QMC) simulations by Dornheim et al. [Phys. Rev. Lett. 117, 156403 (2016)]. g(up arrow down arrow)(r) is found to be in good agreement with the RPIMC data, while a mismatch is seen in g(up arrow down arrow)(r) at small r where it becomes somewhat negative. As an interesting result, it is deduced that a non-monotonic T-dependence of g(0) is driven primarily by g(up arrow down arrow)(0). Our results of Eint and Fxc exhibit an excellent agreement with the QMC study due to Dornheim et al., which deals with the finite-size correction quite accurately. We observe, however, a visible deviation of Eint from the RPIMC data for high densities (similar to 8% at r(s) = 1). Further, we have extended our study to the fully spin-polarized phase. Again, with the exception of high density region, we find a good agreement of Eint with the RPIMC data. This points to the need of settling the problem of finite-size correction in the spin-polarized phase also. Interestingly, we also find that the thermal effects tend to oppose spatial localization as well as spin polarization of electrons.
机译:我们通过测定线密度和自旋密度响应函数,研究了热稠密均匀电子气中的自旋分辨关联,在Singwi等人的动态自洽平均场理论中,计算出的自旋分辨对相关函数g(sigma-sigma')(r)与Brown等人最近的受限路径积分蒙特卡罗(RPIMC)模拟进行了比较。[Phys.Rev.Lett.110146405(2013)],而相互作用能Eint和交换关联自由能F-xc与RPIMC以及Dornheim等人最近的从头算量子蒙特卡罗(QMC)模拟。[Phys.Rev.Lett.117156403(2016)]。发现g(向上箭头-向下箭头)(r)与RPIMC数据非常一致,而在小r处的g(向上箭头-向下箭头)(r)中出现了不匹配,在小r处它变得有些负。作为一个有趣的结果,我们推导出g(0)的非单调T依赖性主要由g(向上箭头向下箭头)(0)驱动。我们对Eint和Fxc的研究结果与Dornheim等人的QMC研究结果非常一致,后者相当准确地处理了有限尺寸校正。然而,我们观察到,在高密度情况下,Eint与RPIMC数据存在明显偏差(类似于r(s)=1时的8%)。此外,我们还将研究扩展到了全自旋极化相。此外,除了高密度区域外,我们发现Eint与RPIMC数据有很好的一致性。这也说明需要解决自旋极化相位中的有限尺寸校正问题。有趣的是,我们还发现热效应倾向于反对电子的空间局域化和自旋极化。

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