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Exact ground-state properties of a one-dimensional Coulomb gas

机译:一维库仑气的精确基态性质

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摘要

The ground-state properties of a single-component one-dimensional Coulomb gas are investigated. We use Bose-Fermi mapping for the ground-state wave function which permits solution of the Fermi sign problem in the\udfollowing respects: (i) the nodal surface is known, permitting exact calculations; and (ii) evaluation of determinants is avoided, reducing the numerical complexity to that of a bosonic system and, thus, allowing simulation of a large number of fermions. Due to the mapping, the energy and local properties in one-dimensional Coulomb\udsystems are exactly the same for Bose-Einstein and Fermi-Dirac statistics. The exact ground-state energy is calculated in homogeneous and trapped geometries using the diffusion Monte Carlo method. We show that in the low-density Wigner crystal limit an elementary low-lying excitation is a plasmon, which is to be contrasted with\udthe high-density ideal Fermi gas/Tonks-Girardeau limit, where low-lying excitations are phonons. Exact density profiles are compared to the ones calculated within the local density approximation, which predicts a change from a semicircular to an inverted parabolic shape of the density profile as the value of the charge is increased.
机译:研究了单组分一维库仑气体的基态性质。我们将Bose-Fermi映射用于基波函数,从而可以在以下方面解决费米符号问题:(i)节点面已知,可以进行精确计算; (ii)避免了对行列式的求值,从而将数值复杂度降低到了玻色子系统的数值复杂度,从而可以模拟大量的费米子。由于映射,对于Bose-Einstein和Fermi-Dirac统计,一维库仑系统中的能量和局部性质完全相同。精确的基态能量是使用扩散蒙特卡洛方法以均质和捕获几何形状计算的。我们表明,在低密度维格纳晶体极限中,基本的低地激发是等离子体激元,这与高密度理想费米气体/唐克斯-吉拉多极限(低地激发是声子)形成对比。将精确的密度分布图与在局部密度近似值内计算出的密度分布图进行比较,可以预测随着电荷值的增加,密度分布图从半圆形变为倒抛物线形状。

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