Theory of Quantum Imaginary-Time Mpemba Effect

Fuente: arXiv
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Main Authors: Zeng, Yumeng, Son, Jeongrak, Gu, Mile, Yuan, Xiao
Format: Preprint
Published: 2026
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author Zeng, Yumeng
Son, Jeongrak
Gu, Mile
Yuan, Xiao
author_facet Zeng, Yumeng
Son, Jeongrak
Gu, Mile
Yuan, Xiao
contents Quantum imaginary-time evolution (QITE) is a fundamental framework for preparing ground and thermal states, yet its computational cost scales significantly with the evolution duration $τ$. Reducing this duration is critical for practical quantum advantage. Here, we establish a unified theoretical framework for the Mpemba effect in QITE -- a counterintuitive phenomenon where a state initially farther from the ground state relaxes to it faster than one initially closer. We derive a remarkably simple necessary and sufficient condition for the occurrence of this effect, showing it is uniquely determined by the population ratios of excited states to the ground state. For practical state preparation, we introduce a rigorous sufficient condition for the finite-time Mpemba effect, ensuring the crossing occurs before reaching a prescribed proximity threshold. Furthermore, we unveil unique dynamical features, including a multiple-crossing phenomenon in multi-level systems and simultaneous intersections for collinear initial states. Our results provide criteria for identifying favorable initial states in QITE and offer deep insights into the speed limit of quantum state preparation.
format Preprint
id arxiv_https___arxiv_org_abs_2604_17412
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Theory of Quantum Imaginary-Time Mpemba Effect
Zeng, Yumeng
Son, Jeongrak
Gu, Mile
Yuan, Xiao
Quantum Physics
Quantum imaginary-time evolution (QITE) is a fundamental framework for preparing ground and thermal states, yet its computational cost scales significantly with the evolution duration $τ$. Reducing this duration is critical for practical quantum advantage. Here, we establish a unified theoretical framework for the Mpemba effect in QITE -- a counterintuitive phenomenon where a state initially farther from the ground state relaxes to it faster than one initially closer. We derive a remarkably simple necessary and sufficient condition for the occurrence of this effect, showing it is uniquely determined by the population ratios of excited states to the ground state. For practical state preparation, we introduce a rigorous sufficient condition for the finite-time Mpemba effect, ensuring the crossing occurs before reaching a prescribed proximity threshold. Furthermore, we unveil unique dynamical features, including a multiple-crossing phenomenon in multi-level systems and simultaneous intersections for collinear initial states. Our results provide criteria for identifying favorable initial states in QITE and offer deep insights into the speed limit of quantum state preparation.
title Theory of Quantum Imaginary-Time Mpemba Effect
topic Quantum Physics
url https://arxiv.org/abs/2604.17412