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Thermalization and prethermalization in periodically kicked quantum spin chains

机译:在定期踢出量子旋转链中的热化和前格式化

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摘要

We study the dynamics of periodically kicked many-body systems away from the high-frequency regime, and discuss a family of Floquet systems where the notion of prethermalization can be naturally extended to intermediate and low driving frequencies. We investigate numerically the dynamics of both integrable and nonintegrable systems, and report on the formation of a long-lived prethermal plateau, akin to the high-frequency limit, where the system thermalizes with respect to an effective Hamiltonian captured by the inverse-frequency expansion (IFE). Unlike the high-frequency regime, we find that the relevant heating times are model dependent: we analyze the stability of the prethermal plateau to small perturbations in the drive period and show that, in a spin chain whose IFE is intractable, the plateau duration is insensitive to the perturbation strength, in contrast to a chain where the IFE admits the resummation of an entire subseries. Infinitesimal perturbations are enough to restore the ergodic properties of the system, and decrease residual finite-size effects. Although the regime where the Floquet system leaves the prethermal plateau and starts heating up to infinite temperature is not captured by the IFE, we provide evidence that the evolved subsystem is described well by a thermal state with respect to the IFE Hamiltonian, with a gradually changing temperature, in accord with the eigenstate thermalizalion hypothesis.
机译:我们研究了周期性地踢了许多身体系统的动态,远离高频制度,并讨论了一系列浮子系统,其中前移动的概念可以自然地延伸到中间和低驱动频率。我们在数值上调查了可集成和不可植物系统的动态,并报告了长寿的前高原的形成,类似于高频极限,其中系统相对于由逆频率扩展捕获的有效汉密尔顿人热化(IFE)。与高频制度不同,我们发现相关的加热时间是型号依赖性:我们分析了推动期间的前高原对小扰动的稳定性,并表明,在旋转链中,其IFE是棘手的,高原持续时间是与扰动强度不敏感,与IFE承认整个子系列的链条相反。无限的扰动足以恢复系统的ergodic特性,并降低残留的有限尺寸效应。虽然IFE没有捕获浮子系统离开前甲板系统并开始加热到无限温度的方案,但我们提供了一种证据表明,通过相对于IFE Hamiltonian的热状态良好地描述了进化的子系统,逐渐变化温度,符合特征恒温假设。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第14期|144307.1-144307.26|共26页
  • 作者单位

    Universitaet Wuerzburg Am Hubland 97074 Wuerzburg Germany Department of Physics KTH Royal Institute of Technology SE-106 91 Stockholm Sweden;

    Department of Physics University of California Berkeley California 94720 USA Department of Physics St. Kliment Ohridski University of Sofia 5 James Bourchier Blvd 1164 Sofia Bulgaria;

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