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Performance analysis of continuous-time solvers for quantum impurity models

机译:量子杂质模型的连续时间求解器的性能分析

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Impurity solvers play an essential role in the numerical investigation of strongly correlated electrons systems within the "dynamical mean field" approximation. Recently, a new class of continuous-time solvers has been developed based on a diagrammatic expansion of the partition function in either the interactions or the impurity-bath hybridization. We investigate the performance of these two complementary approaches and compare them to the well-established Hirsch-Fye method. The results show that the continuous-time methods, and, in particular, the version which expands in the hybridization, provide substantial gains in computational efficiency.
机译:杂质求解器在“动态平均场”近似内的强相关电子系统的数值研究中起着至关重要的作用。近来,基于相互作用或杂质-浴杂交中分配函数的图解扩展,已经开发了新型的连续时间求解器。我们研究了这两种互补方法的性能,并将它们与公认的Hirsch-Fye方法进行比较。结果表明,连续时间方法,尤其是在杂交中扩展的方法,在计算效率上有显着提高。

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