Observation of quantum multi-Mpemba effect in a trapped-ion system
Abstract
The quantum Mpemba effect (ME) in Markovian systems is conventionally explained by a smaller overlap between the initial state and the slowest decay mode (SDM). Such state, initially farther away from equilibrium or steady state, relaxes faster than closer ones, resulting to a crossing of their trajectories. This picture, by neglecting the transient dynamics, holds in the long-time limit. Here we experimentally observe multiple trajectory crossings (multi-ME) in the relaxation dynamics of a trapped ion. Such novel dynamics takes place in a unusual scenario where the initial state instead has a larger overlap with the SDM. We develop a theoretical framework based on relaxation speed to understand the multi-ME. We show that the initial relaxation speed is governed by the fastest decay mode, which together with the SDM overlap gives a phase diagram that reveals both the occurrence and the types of quantum ME observed in our experiment. Our study goes beyond the simple picture based on the long-time limit, tracks continuously the quantum ME dynamics, and establishes a comprehensive framework to describe the transient quantum relaxation.
Keywords
Cite
@article{arxiv.2604.21320,
title = {Observation of quantum multi-Mpemba effect in a trapped-ion system},
author = {Gang Xia and Yu-Jie Zheng and Jing Huang and Chun-Wang Wu and Yi Xie and Ting Chen and Wei Wu and Weibin Li and Hui Jing and Jie Zhang and Yan-Li Zhou and Ping-Xing Chen},
journal= {arXiv preprint arXiv:2604.21320},
year = {2026}
}