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强关联费米子的超快动力学——非平衡格林函数与自能近似

Ultrafast dynamics of strongly correlated fermions-nonequilibrium Green functions and selfenergy approximations.

作者信息

Schlünzen N, Hermanns S, Scharnke M, Bonitz M

机构信息

Institut für Theoretische Physik und Astrophysik, Christian-Albrechts-Universität zu Kiel, D-24098 Kiel, Germany.

出版信息

J Phys Condens Matter. 2020 Mar 6;32(10):103001. doi: 10.1088/1361-648X/ab2d32. Epub 2019 Jun 27.

Abstract

This article presents an overview on recent progress in the theory of nonequilibrium Green functions (NEGF). We discuss applications of NEGF simulations to describe the femtosecond dynamics of various finite fermionic systems following an excitation out of equilibrium. This includes the expansion dynamics of ultracold atoms in optical lattices following a confinement quench and the excitation of strongly correlated electrons in a solid by the impact of a charged particle. NEGF, presently, are the only ab initio quantum approach that is able to study the dynamics of correlations for long times in two and three dimensions. However, until recently, NEGF simulations have mostly been performed with rather simple selfenergy approximations such as the second-order Born approximation (SOA). While they correctly capture the qualitative trends of the relaxation towards equilibrium, the reliability and accuracy of these NEGF simulations has remained open, for a long time. Here we report on recent tests of NEGF simulations for finite lattice systems against exact-diagonalization and density-matrix-renormalization-group benchmark data. The results confirm the high accuracy and predictive capability of NEGF simulations-provided selfenergies are used that go beyond the SOA and adequately include strong correlation and dynamical-screening effects. With an extended arsenal of selfenergies that can be used effectively, the NEGF approach has the potential of becoming a powerful simulation tool with broad areas of new applications including strongly correlated solids and ultracold atoms. The present review aims at making such applications possible. To this end we present a selfcontained introduction to the theory of NEGF and give an overview on recent numerical applications to compute the ultrafast relaxation dynamics of correlated fermions. In the second part we give a detailed introduction to selfenergies beyond the SOA. Important examples are the third-order approximation, the [Formula: see text] approximation, the T-matrix approximation and the fluctuating-exchange approximation. We give a comprehensive summary of the explicit selfenergy expressions for a variety of systems of practical relevance, starting from the most general expressions (general basis) and the Feynman diagrams, and including also the important cases of diagonal basis sets, the Hubbard model and the differences occuring for bosons and fermions. With these details, and information on the computational effort and scaling with the basis size and propagation duration, readers will be able to choose the proper basis set and straightforwardly implement and apply advanced selfenergy approximations to a broad class of systems.

摘要

本文概述了非平衡格林函数(NEGF)理论的最新进展。我们讨论了NEGF模拟在描述各种有限费米子系统在非平衡激发后的飞秒动力学方面的应用。这包括光学晶格中冷原子在约束猝灭后的膨胀动力学,以及固体中带电粒子撞击引起的强关联电子的激发。目前,NEGF是唯一能够研究二维和三维中长时间关联动力学的第一性原理量子方法。然而,直到最近,NEGF模拟大多是使用相当简单的自能近似,如二阶玻恩近似(SOA)进行的。虽然它们正确地捕捉了向平衡弛豫的定性趋势,但这些NEGF模拟的可靠性和准确性长期以来一直未得到解决。在这里,我们报告了针对有限晶格系统的NEGF模拟与精确对角化和密度矩阵重整化群基准数据的最新测试。结果证实了NEGF模拟的高精度和预测能力——前提是使用超越SOA且充分包含强关联和动态屏蔽效应的自能。随着可以有效使用的自能库的扩展,NEGF方法有潜力成为一种强大的模拟工具,具有广泛的新应用领域,包括强关联固体和超冷原子。本综述旨在使此类应用成为可能。为此,我们对NEGF理论进行了自包含的介绍,并概述了最近用于计算关联费米子超快弛豫动力学的数值应用。在第二部分中,我们详细介绍了超越SOA的自能。重要的例子包括三阶近似、[公式:见正文]近似、T矩阵近似和涨落交换近似。我们从最一般的表达式(一般基)和费曼图开始,全面总结了各种具有实际相关性的系统的显式自能表达式,还包括对角基集、哈伯德模型以及玻色子和费米子出现的差异等重要情况。有了这些细节,以及关于计算工作量以及与基大小和传播持续时间的标度关系的信息,读者将能够选择合适的基集,并直接将先进的自能近似应用于广泛的系统。

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