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Main Authors: Liu, Zhilong, Tian, Zehua, Wang, Jieci
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2605.23197
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author Liu, Zhilong
Tian, Zehua
Wang, Jieci
author_facet Liu, Zhilong
Tian, Zehua
Wang, Jieci
contents In classical thermodynamics, the Mpemba effect refers to the counterintuitive observation that hot water can freeze faster than cold water, manifesting as an anomalous crossing of dynamical trajectories. While analogues of this phenomenon have been explored in quantum radiative systems and spin-chain entanglement asymmetry, its connection to the finite-time decoupling of quantum correlations remains elusive. In this Letter, we uncover a distinct quantum Mpemba effect associated with entanglement sudden death (ESD). By analyzing two qubits interacting with local amplitude damping reservoirs, we demonstrate that a more strongly entangled initial state can experience a faster collapse into a separable state than a more weakly entangled one. We provide an exact analytical derivation of the trajectory crossover dynamics and the ESD time. Finally, we map the phase diagram of initial state parameters to delineate the regime where this anomalous entanglement Mpemba effect occurs, offering insights into the control of quantum resource lifetimes in dissipative environments.
format Preprint
id arxiv_https___arxiv_org_abs_2605_23197
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Anomalous Decay of Quantum Resources: The Entanglement Sudden Death Mpemba Effect
Liu, Zhilong
Tian, Zehua
Wang, Jieci
Quantum Physics
General Relativity and Quantum Cosmology
In classical thermodynamics, the Mpemba effect refers to the counterintuitive observation that hot water can freeze faster than cold water, manifesting as an anomalous crossing of dynamical trajectories. While analogues of this phenomenon have been explored in quantum radiative systems and spin-chain entanglement asymmetry, its connection to the finite-time decoupling of quantum correlations remains elusive. In this Letter, we uncover a distinct quantum Mpemba effect associated with entanglement sudden death (ESD). By analyzing two qubits interacting with local amplitude damping reservoirs, we demonstrate that a more strongly entangled initial state can experience a faster collapse into a separable state than a more weakly entangled one. We provide an exact analytical derivation of the trajectory crossover dynamics and the ESD time. Finally, we map the phase diagram of initial state parameters to delineate the regime where this anomalous entanglement Mpemba effect occurs, offering insights into the control of quantum resource lifetimes in dissipative environments.
title Anomalous Decay of Quantum Resources: The Entanglement Sudden Death Mpemba Effect
topic Quantum Physics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2605.23197