Continuous-time quantum Monte Carlo method for fermions: Beyond auxiliary field framework

A. Rubtsov, V. Savkin, A. Lichtenstein
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引用次数: 397

Abstract

A numerically exact continuous-time quantum Monte Carlo algorithm for finite fermionic systems with nonlocal interactions is proposed. The scheme is particularly applicable for general multiband time-dependent correlations, since it does not invoke Hubbard-Stratonovich transformation. The present determinantal grand-canonical method is based on a stochastic series expansion for the partition function in the interaction representation. The results for the Green function and for the time-dependent susceptibility of multiorbital supersymmetric impurity model with a spin-flip interaction are presented.
费米子的连续时间量子蒙特卡罗方法:超越辅助场框架
提出了具有非局部相互作用的有限费米子系统的一种数值精确的连续时间量子蒙特卡罗算法。该方案特别适用于一般的多波段时间相关,因为它不调用哈伯德-斯特拉诺维奇变换。本文的行列式大规范方法是基于相互作用表示中配分函数的随机级数展开。给出了具有自旋翻转相互作用的多轨道超对称杂质模型的格林函数和随时间变化的磁化率的计算结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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