Emergent dynamical quantum phase transition in a $Z_3$ symmetric chiral clock model

Fuente: arXiv
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Autores principales: Yu, Ling-Feng, Li, Wei-Lin, Yu, Xue-Jia, Li, Zhi
Formato: Preprint
Publicado: 2024
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author Yu, Ling-Feng
Li, Wei-Lin
Yu, Xue-Jia
Li, Zhi
author_facet Yu, Ling-Feng
Li, Wei-Lin
Yu, Xue-Jia
Li, Zhi
contents We study the quench dynamics in a $Z_3$ symmetric chiral clock model (CCM). The results reveal that chiral phases can lead to the emergence of dynamical quantum phase transition (DQPT). By analyzing Lee-Yang-Fisher zeros' distribution in the complex plane, we uncover the relation between the chiral phase and the emergence of DQPT. In concrete terms, only by taking some special angles can DQPT be induced. We confirm the above relation by computing the non-analytic points in Loschmidt echo return rate function. Furthermore, through the analysis of the corresponding dynamical partition function, we reveal the mechanism of the emergent DQPT and deduce the analytical expression of dynamical partition function's zero points' coordinates. Based on the analytic expression, one can obtain all the angles that induce DQPT's emergence and predict more possible DQPT in the system.
format Preprint
id arxiv_https___arxiv_org_abs_2411_03953
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Emergent dynamical quantum phase transition in a $Z_3$ symmetric chiral clock model
Yu, Ling-Feng
Li, Wei-Lin
Yu, Xue-Jia
Li, Zhi
Statistical Mechanics
Quantum Physics
We study the quench dynamics in a $Z_3$ symmetric chiral clock model (CCM). The results reveal that chiral phases can lead to the emergence of dynamical quantum phase transition (DQPT). By analyzing Lee-Yang-Fisher zeros' distribution in the complex plane, we uncover the relation between the chiral phase and the emergence of DQPT. In concrete terms, only by taking some special angles can DQPT be induced. We confirm the above relation by computing the non-analytic points in Loschmidt echo return rate function. Furthermore, through the analysis of the corresponding dynamical partition function, we reveal the mechanism of the emergent DQPT and deduce the analytical expression of dynamical partition function's zero points' coordinates. Based on the analytic expression, one can obtain all the angles that induce DQPT's emergence and predict more possible DQPT in the system.
title Emergent dynamical quantum phase transition in a $Z_3$ symmetric chiral clock model
topic Statistical Mechanics
Quantum Physics
url https://arxiv.org/abs/2411.03953