Dynamical Quantum Phase Transition and Thermal Equilibrium in the Lattice Thirring Model

Mari Carmen Bañuls, Krzysztof Cichy, Hao-Ti Hung, Ying-Jer Kao, C. -J. David Lin, Amit Singh
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Abstract

Using tensor network methods, we simulate the real-time evolution of the lattice Thirring model quenched out of equilibrium in both the critical and massive phases, and study the appearance of dynamical quantum phase transitions, as non-analyticities in the Loschmidt rate. Whereas the presence of a dynamical quantum phase transition in the model does not correspond to quenches across the critical line of the equilibrium phase diagram at zero temperature, we identify a threshold in the energy density of the initial state, necessary for a dynamical quantum phase transition to be present. Moreover, in the case of the gapped quench Hamiltonian, we unveil a connection of this threshold to a transition between different regions in the finite temperature phase diagram.
晶格泰林模型中的动态量子相变和热平衡
利用张量网络方法,我们模拟了在临界相和大质量相中淬火出平衡的晶格泰林模型的实时演化,并研究了动态量子相变的出现,即洛希米特速率的非解析性。虽然模型中存在的动态量子相变与零温下平衡相图临界线的淬火并不对应,但我们确定了初始状态能量密度的一个阈值,它是出现动态量子相变的必要条件。此外,在间隙淬火哈密顿的情况下,我们揭示了这个阈值与有限温度相图中不同区域之间过渡的联系。
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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