论文标题

Loschmidt回声奇异性作为强烈局部相的动态特征

Loschmidt echo singularities as dynamical signatures of strongly localized phases

论文作者

Benini, Leonardo, Naldesi, Piero, Römer, Rudolf A., Roscilde, Tommaso

论文摘要

量子定位(单身或多体)伴随着局部保守量的出现 - 其保护精确是通过系统没有运输的核心。对于费米金系统和$ s = 1/2 $旋转型号,这种保守的数量采用有效的两级系统的形式,称为$ l $ bits。尽管它们的存在是局部阶段的定义特征,但它们的直接实验观察仍然难以捉摸。在这里,我们表明,强烈的本地化$ l $ bits具有巨大的通用签名,可访问最先进的量子模拟器,以loschmidt的周期性尖尖象奇异性的形式回荡,从néel/churoce-coldentum place quench。这种奇异性是由独立两级系统合奏的Rabi振荡模型完美捕获的,该模型还重现了纠缠熵和不平衡动力学的短时行为。在相互作用的局部相的情况下,较长时间的动力学显示了loschmidt回声奇异性的更快衰减的急剧跨界,并提供了$ l $ bit之间相互作用的实验可访问的签名。

Quantum localization (single-body or many-body) comes with the emergence of local conserved quantities -- whose conservation is precisely at the heart of the absence of transport through the system. In the case of fermionic systems and $S=1/2$ spin models, such conserved quantities take the form of effective two-level systems, called $l$-bits. While their existence is the defining feature of localized phases, their direct experimental observation remains elusive. Here we show that strongly localized $l$-bits bear a dramatic universal signature, accessible to state-of-the-art quantum simulators, in the form of periodic cusp singularities in the Loschmidt echo following a quantum quench from a Néel/charge-density-wave state. Such singularities are perfectly captured by a simple model of Rabi oscillations of an ensemble of independent two-level systems, which also reproduces the short-time behavior of the entanglement entropy and the imbalance dynamics. In the case of interacting localized phases, the dynamics at longer times shows a sharp crossover to a faster decay of the Loschmidt echo singularities, offering an experimentally accessible signature of the interactions between $l$-bits.

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