Universal time evolution of string order parameter in quantum critical systems with boundary invertible or non-invertible symmetry breaking

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Main Authors: Barad, Ruhanshi, Tang, Qicheng, Zhu, Wei, Wen, Xueda
Format: Preprint
Published: 2024
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author Barad, Ruhanshi
Tang, Qicheng
Zhu, Wei
Wen, Xueda
author_facet Barad, Ruhanshi
Tang, Qicheng
Zhu, Wei
Wen, Xueda
contents The global symmetry, either invertible or non-invertible, has been extensively studied in two dimensional conformal field theories in recent years. When the theory is defined on a manifold with open boundaries, however, many interesting conformal boundary conditions will fully or partially break such global symmetry. In this work, we study the effect of symmetry-breaking boundaries or interfaces when the system is out of equilibrium. We show that the boundary or interface symmetry-breaking can be detected by the time evolution of string order parameters, which are constructed from the symmetry operators that implement the symmetry transformations. While the string order parameters are independent of time if the symmetry is preserved over the whole system, they evolve in time in a universal way if the boundary or interface breaks the symmetry. More explicitly, in the presence of boundary or interface symmetry-breaking, the string order parameters decay exponentially in time after a global quantum quench, and decay as a power-law in time after a local quantum quench. We also generalize our study to the case when the string order parameters are defined in a subsystem, which are related to the full counting statistics. It is found there are also universal features in the time evolution of string order parameters in this case. We verify our field theory results by studying the time evolution of these two different types of string order parameters in lattice models.
format Preprint
id arxiv_https___arxiv_org_abs_2410_16402
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Universal time evolution of string order parameter in quantum critical systems with boundary invertible or non-invertible symmetry breaking
Barad, Ruhanshi
Tang, Qicheng
Zhu, Wei
Wen, Xueda
Strongly Correlated Electrons
Statistical Mechanics
High Energy Physics - Theory
Mathematical Physics
Quantum Physics
The global symmetry, either invertible or non-invertible, has been extensively studied in two dimensional conformal field theories in recent years. When the theory is defined on a manifold with open boundaries, however, many interesting conformal boundary conditions will fully or partially break such global symmetry. In this work, we study the effect of symmetry-breaking boundaries or interfaces when the system is out of equilibrium. We show that the boundary or interface symmetry-breaking can be detected by the time evolution of string order parameters, which are constructed from the symmetry operators that implement the symmetry transformations. While the string order parameters are independent of time if the symmetry is preserved over the whole system, they evolve in time in a universal way if the boundary or interface breaks the symmetry. More explicitly, in the presence of boundary or interface symmetry-breaking, the string order parameters decay exponentially in time after a global quantum quench, and decay as a power-law in time after a local quantum quench. We also generalize our study to the case when the string order parameters are defined in a subsystem, which are related to the full counting statistics. It is found there are also universal features in the time evolution of string order parameters in this case. We verify our field theory results by studying the time evolution of these two different types of string order parameters in lattice models.
title Universal time evolution of string order parameter in quantum critical systems with boundary invertible or non-invertible symmetry breaking
topic Strongly Correlated Electrons
Statistical Mechanics
High Energy Physics - Theory
Mathematical Physics
Quantum Physics
url https://arxiv.org/abs/2410.16402