The quantum Mpemba effect in free-fermionic mixed states

Fuente: arXiv
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Main Authors: Ares, Filiberto, Vitale, Vittorio, Murciano, Sara
Format: Preprint
Published: 2024
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author Ares, Filiberto
Vitale, Vittorio
Murciano, Sara
author_facet Ares, Filiberto
Vitale, Vittorio
Murciano, Sara
contents Recently, a novel probe to study symmetry breaking, known as entanglement asymmetry, has emerged and has been utilized to explore how symmetry is dynamically restored following quantum quenches. Interestingly, it has been shown that, in certain scenarios, greater initial symmetry breaking leads to faster restoration, akin to a quantum Mpemba effect. This study focuses on investigating the effect of mixed initial states and non-unitary dynamics on symmetry restoration. The mixedness of a state can arise from different sources. We consider dephasing or dissipative processes affecting initial pure states or unitary dynamics of initially thermal states. In the former case, the stationary state after the quench is independent of the initial configuration, resembling the phenomenology of the classical Mpemba effect. Investigating the XY spin chain model, through a combination of analytical calculations and numerical simulations, we identify the conditions for the occurrence of the quantum Mpemba effect. It turns out that this phenomenon still occurs in the presence of dissipation or at finite temperature, even though it will be eventually suppressed as the state becomes more mixed.
format Preprint
id arxiv_https___arxiv_org_abs_2405_08913
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The quantum Mpemba effect in free-fermionic mixed states
Ares, Filiberto
Vitale, Vittorio
Murciano, Sara
Statistical Mechanics
Quantum Physics
Recently, a novel probe to study symmetry breaking, known as entanglement asymmetry, has emerged and has been utilized to explore how symmetry is dynamically restored following quantum quenches. Interestingly, it has been shown that, in certain scenarios, greater initial symmetry breaking leads to faster restoration, akin to a quantum Mpemba effect. This study focuses on investigating the effect of mixed initial states and non-unitary dynamics on symmetry restoration. The mixedness of a state can arise from different sources. We consider dephasing or dissipative processes affecting initial pure states or unitary dynamics of initially thermal states. In the former case, the stationary state after the quench is independent of the initial configuration, resembling the phenomenology of the classical Mpemba effect. Investigating the XY spin chain model, through a combination of analytical calculations and numerical simulations, we identify the conditions for the occurrence of the quantum Mpemba effect. It turns out that this phenomenon still occurs in the presence of dissipation or at finite temperature, even though it will be eventually suppressed as the state becomes more mixed.
title The quantum Mpemba effect in free-fermionic mixed states
topic Statistical Mechanics
Quantum Physics
url https://arxiv.org/abs/2405.08913