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Many-body dynamical localization in the kicked Bose-Hubbard chain

机译:被踢的Bose-Hubbard链中的多体动力学局部化

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摘要

We provide evidence that a clean kicked Bose-Hubbard model exhibits a many-body dynamically localized phase. This phase shows ergodicity breaking up to the largest sizes we were able to consider. We argue that this property persists in the limit of large size. The Floquet states violate eigenstate thermalization and then the asymptotic value of local observables depends on the initial state and is not thermal. This implies that the system does not generically heat up to infinite temperature, for almost all the initial states. Differently from many-body localization here the entanglement entropy linearly increases in time. This increase corresponds to space-delocalized Floquet states which are nevertheless localized across specific subsectors of the Hilbert space: In this way the system is prevented from randomly exploring all the Hilbert space and does not thermalize.
机译:我们提供的证据表明,一个干净的踢Bose-Hubbard模型表现出多体动态局部相。这个阶段显示了遍历性分解为我们能够考虑的最大尺寸。我们认为该属性在大尺寸的限制中持续存在。 Floquet态违反了本征态热化,然后局部可观测值的渐近值取决于初始状态,而不是热态。这意味着对于几乎所有初始状态,系统通常不会加热到无限温度。与这里的多体定位不同,纠缠熵随时间线性增加。这种增加对应于空间离域的Floquet状态,这些状态仍然位于Hilbert空间的特定子扇区中:这样可以防止系统随机探索所有Hilbert空间并且不会热化。

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  • 来源
    《Physical review》 |2020年第6期|064302.1-064302.17|共17页
  • 作者单位

    Rudolf Peierls Centre for Theoretical Physics Clarendon Laboratory University of Oxford Oxford OX1 3PU England United Kingdom;

    Abdus Salam ICTP Strada Costiera 11 I-34151 Trieste Italy Dipartimento di Fisica Università di Napoli "Federico Ⅱ " Monte Sant'Angelo I-80126 Napoli Italy;

    Abdus Salam ICTP Strada Costiera 11 1-34151 Trieste Italy Max-Planck-Institut für Physik Komplexer Systeme Nöthnitzer Strasse 38 D-01187 Dresden Germany;

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