Disorder-free localization and many-body quantum scars from magnetic frustration

P. McClarty, M. Haque, Arnab Sen, J. Richter
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引用次数: 43

Abstract

Geometrical frustration has led to rich insights into condensed matter physics, especially as a mechansim to produce exotic low energy states of matter. Here we show that frustration provides a natural vehicle to generate models exhibiting anomalous thermalization of various types within high energy states. We consider three classes of non-integrable translationally invariant frustrated spin models: (I) systems with local conserved quantities where the number of symmetry sectors grows exponentially with the system size but more slowly than the Hilbert space dimension (II) systems with exact eigenstates that are singlet coverings and (III) flat band systems hosting magnon crystals. We argue that several 1D and 2D models from class (I) exhibit disorder-free localization in high energy states so that information propagation is dynamically inhibited on length scales greater than a few lattice spacings. We further show that models of class (II) and (III) exhibit quantum many-body scars $-$ eigenstates of non-integrable Hamiltonians with finite energy density and anomalously low entanglement entropy. Our results demonstrate that magnetic frustration supplies a means to systematically construct classes of non-integrable models exhibiting anomalous thermalization in mid-spectrum states.
无无序定位和多体量子磁损伤
几何挫折导致了对凝聚态物理的丰富见解,特别是作为一种产生奇异低能态的物质的机制。在这里,我们表明挫折提供了一个自然的载体,以产生在高能量状态下显示各种类型的异常热化的模型。我们考虑了三类不可积平移不变受挫自旋模型:(I)具有局部守恒量的系统,其中对称扇区的数量随系统大小呈指数增长,但比希尔伯特空间维慢;(II)具有精确的单重态覆盖的本征态系统;(III)承载磁振子晶体的平带系统。我们认为,(I)类的几个一维和二维模型在高能态表现出无无序局域化,因此在大于几个晶格间距的长度尺度上,信息传播被动态抑制。我们进一步证明了(II)和(III)类模型具有有限能量密度和异常低纠缠熵的不可积哈密顿量的量子多体伤痕$-$特征态。我们的研究结果表明,磁挫折提供了一种方法来系统地构建在中谱状态下表现出异常热化的非积分模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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