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Instability of many-body localized systems as a phase transition in a nonstandard thermodynamic limit

机译:许多身体局部系统的不稳定性作为非标准热力学极限中的相位转换

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摘要

The many-body localization (MBL) phase transition is not a conventional thermodynamic phase transition. Thus, to define the phase transition, one should allow the possibility of taking the limit of an infinite system in a way that is not the conventional thermodynamic limit. We explore this for the so-called avalanche instability due to rare thermalizing regions in the MBL phase for systems with quenched randomness in two cases: for short-range interacting systems in more than one spatial dimension and for systems in which the interactions fall off with distance as a power law. We find an unconventional way of scaling these systems so that they do have a type of phase transition. Our arguments suggest that the MBL phase transition in systems with short-range interactions in more than one dimension (or with sufficiently rapidly decaying power laws) is a transition where entanglement in the eigenstates begins to spread into some typical regions: The transition is set by when the avalanches start. Once this entanglement gets started, the system does thermalize. From this point of view, the much-studied case of one-dimensional MBL with short-range interactions is a special case with a different, and in some ways more conventional, type of phase transition.
机译:许多身体定位(MBL)相变不是传统的热力学相转变。因此,为了定义相变,应该允许以不传统的热力学极限的方式允许以不传统的方式采取无限系统的可能性。我们探讨了所谓的雪崩不稳定性,由于两种情况下的系统的MBL阶段中的MBL阶段罕见的热化区域:用于多于一个空间尺寸的短程交互系统,以及相互作用脱落的系统作为权力法的距离。我们发现一种非常规的方式来缩放这些系统,以便他们确实有一种相位转换。我们的论据表明,在多个维度(或充分迅速腐烂的动力法中)的系统中的MBL阶段转换是突出者中的纠缠在一些典型区域中的转变:转变由当雪崩开始时。一旦这个纠缠开始,系统就会热化。从这个角度来看,具有短距离相互作用的一维MBL的多学习案例是具有不同的特殊情况,并且在某种程度上,更多传统的相位转换。

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  • 来源
    《Physical review》 |2019年第13期|134305.1-134305.9|共9页
  • 作者单位

    CUNY Coll Staten Isl Dept Phys & Astron Staten Isl NY 10314 USA|CUNY Grad Ctr Phys Program & Initiat Theoret Sci New York NY 10016 USA;

    Princeton Univ Dept Phys Princeton NJ 08544 USA;

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