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Finite-T correlations and free exchange-correlation energy of quasi-one-dimensional electron gas

机译:准二维电子气体的有限元相关性与自由汇兑相关能量

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We have studied the effect of temperature on static density density correlations and plasmon excitation spectrum of quasi-one-dimensional electron gas (Q1DEG) using the random phase approximation (RPA). Numerical results for static structure factor, pair-correlation function, static density susceptibility, free exchange-correlation energy and plasmon dispersion are presented over a wide range of temperature and electron density. As an interesting result, we find that the short-range correlations exhibit a non-monotonic dependence on temperature T, initially growing stronger (i.e. the pair correlation function at small inter-electron spacing assuming relatively smaller values) with increasing T and then weakening above a critical T. The cross-over temperature is found to increase with increasing coupling among electrons. Also, the q = 2 k(F) peak in the static density susceptibility chi(q, omega = 0, T) at T = 0 K smears out with rising T. The free exchange-correlation energy and plasmon dispersion show a significant variation with T, and the trend is qualitatively the same as in higher dimensions.
机译:我们已经使用随机相位近似(RPA)研究了温度对静态密度相关性和准一维电子气体(Q1deg)的静态密度相关性和等离子体激发谱的影响。静态结构因子的数值结果,对相关函数,静态密度敏感性,自由交换 - 相关能量和等离子体分散在很宽的温度和电子密度上呈现。作为一个有趣的结果,我们发现短距离相关性对温度T的非单调依赖性,最初越来越强(即,假设具有相对较小的值的小型电子间隔的对相关函数)随着上面的增加,然后弱化临界T.发现交叉温度随着电子之间的耦合而增加。另外,在静态密度敏感性智能密度敏感性中的q = 2k(f)峰值在t = 0 k下涂抹于上升T.自由交换 - 相关能量和等离子体分散显示出显着变化使用T,趋势与更高尺寸相同。

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