论文标题

动力量子相变的纠缠视图

Entanglement view of dynamical quantum phase transitions

论文作者

De Nicola, Stefano, Michailidis, Alexios A., Serbyn, Maksym

论文摘要

平衡分区函数与多体统一动力学中的返回概率之间的类比导致了动态量子相变(DQPT)的概念。 DQPT由回归幅度中的非分析定义,并且存在于许多模型中。在某些情况下,DQPTS可能与诸如顺序参数之类的平衡概念有关,但是它们的普遍描述是一个开放的问题。在这项工作中,我们通过在热力学极限中使用矩阵产品状态描述来分类DQPTS。这使我们能够区分两个限制案例和纠缠dqpts,这些情况使用量子ISING模型中的分析描述进行了说明。虽然进动DQPT的特征是较大的纠缠缝隙,并且本质上是半经典的,但纠缠DQPT发生在纠缠频谱中避免的交叉点附近,并且可以通过非局部相关的复杂模式来区分。我们证明了除Ising模型之外的进动和纠缠DQPT的存在,讨论可以区分它们并将其相互作用与复杂DQPT现象学联系起来的可观察到的物品。

The analogy between an equilibrium partition function and the return probability in many-body unitary dynamics has led to the concept of dynamical quantum phase transition (DQPT). DQPTs are defined by non-analyticities in the return amplitude and are present in many models. In some cases DQPTs can be related to equilibrium concepts such as order parameters, yet their universal description is an open question. In this work we provide first steps towards a classification of DQPTs by using a matrix product state description of unitary dynamics in the thermodynamic limit. This allows us to distinguish the two limiting cases of precession and entanglement DQPTs, which are illustrated using an analytical description in the quantum Ising model. While precession DQPTs are characterized by a large entanglement gap and are semiclassical in their nature, entanglement DQPTs occur near avoided crossings in the entanglement spectrum and can be distinguished by a complex pattern of non-local correlations. We demonstrate the existence of precession and entanglement DQPTs beyond Ising model, discuss observables that can distinguish them and relate their interplay to complex DQPT phenomenology.

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