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Universal approach to quantum thermodynamics of strongly coupled systems under nonequilibrium conditions and external driving

机译:非纤维条件下强耦合系统量子热力学的普遍方法及外部驾驶

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摘要

We present an approach based on a density matrix expansion to study thermodynamic properties of a quantum system strongly coupled to two or more baths. For slow external driving of the system, we identify the adiabatic and nonadiabatic contributions to thermodynamic quantities, and we show how the first and second laws of thermodynamics are manifested in the strong coupling regime. Particularly, we show that the entropy production is positive up to second order in the driving speed. The formulation can be applied both for bosonic and fermionic systems, and recovers previous results for the equilibrium case [Phys. Rev. B 98, 134306 (2018)]. The approach is then demonstrated for the driven resonant level model as well as the driven Anderson impurity model, where the hierarchical quantum master equation method is used to accurately simulate the nonequilibrium quantum dynamics.
机译:我们提出了一种基于密度矩阵膨胀的方法,以研究强烈耦合到两个或更多个浴的量子系统的热力学性质。对于系统的慢速外部驱动,我们确定热力学量的绝热和非等贡献,我们展示了如何在强耦合制度中表现出热力学的第一和第二律规律。特别是,我们表明熵产量在驾驶速度下达到二阶。制剂可以用于伴者和铁饼系统,并恢复平衡情况的先前结果[物理。 Rev. B 98,134306(2018)]。然后对驱动的谐振水平模型以及驱动的Anderson杂质模型进行说明该方法,其中使用分层量子母部方程式方法来精确模拟非质量纤维量子动态。

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  • 来源
    《Physical review》 |2020年第18期|184304.1-184304.10|共10页
  • 作者单位

    Department of Chemistry University of California Berkeley Berkeley California 94720 USA;

    Institute of Physics University of Freiburg Hermann-Herder-Str. 3 79104 Freiburg Germany;

    Department of Chemistry University of California Berkeley Berkeley California 94720 USA The Raymond and Beverly Sackler Center for Computational Molecular and Materials Science Tel Aviv University Tel Aviv 69978 Israel;

    Institute of Physics University of Freiburg Hermann-Herder-Str. 3 79104 Freiburg Germany;

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