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量子混沌二次哈密顿量中的广义热化

Generalized Thermalization in Quantum-Chaotic Quadratic Hamiltonians.

作者信息

Łydżba Patrycja, Mierzejewski Marcin, Rigol Marcos, Vidmar Lev

机构信息

Institute of Theoretical Physics, Wroclaw University of Science and Technology, 50-370 Wrocław, Poland.

Department of Physics, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

Phys Rev Lett. 2023 Aug 11;131(6):060401. doi: 10.1103/PhysRevLett.131.060401.

Abstract

Thermalization (generalized thermalization) in nonintegrable (integrable) quantum systems requires two ingredients: equilibration and agreement with the predictions of the Gibbs (generalized Gibbs) ensemble. We prove that observables that exhibit eigenstate thermalization in single-particle sector equilibrate in many-body sectors of quantum-chaotic quadratic models. Remarkably, the same observables do not exhibit eigenstate thermalization in many-body sectors (we establish that there are exponentially many outliers). Hence, the generalized Gibbs ensemble is generally needed to describe their expectation values after equilibration, and it is characterized by Lagrange multipliers that are smooth functions of single-particle energies.

摘要

在非可积(可积)量子系统中的热化(广义热化)需要两个要素:平衡以及与吉布斯(广义吉布斯)系综的预测一致。我们证明,在单粒子扇区表现出本征态热化的可观测量在量子混沌二次模型的多体扇区中达到平衡。值得注意的是,相同的可观测量在多体扇区中并不表现出本征态热化(我们确定存在指数级数量的异常值)。因此,通常需要广义吉布斯系综来描述它们平衡后的期望值,并且它由作为单粒子能量光滑函数的拉格朗日乘子来表征。

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