Observation of anomalous information scrambling in a Rydberg atom array
Quantum Physics
2025-08-04 v2 Quantum Gases
Atomic Physics
Abstract
Quantum information scrambling, which describes the propagation and effective loss of localinformation, is crucial for understanding the dynamics of quantum many-body systems. We report the observation of anomalous information scrambling in an atomic tweezer array with dominant van der Waals interaction. We characterize information spreading by an out-of-time-order correlator and observe persistent oscillations inside a suppressed linear light cone for the initial Neel state. Such an anomalous dynamic, which differs from both generic thermal and many-body localized scenarios, originates from weak ergodicity breaking in quantum many-body scarred systems.
Keywords
Cite
@article{arxiv.2410.16174,
title = {Observation of anomalous information scrambling in a Rydberg atom array},
author = {Xinhui Liang and Zongpei Yue and Yu-Xin Chao and Zhen-Xing Hua and Yige Lin and Meng Khoon Tey and Li You},
journal= {arXiv preprint arXiv:2410.16174},
year = {2025}
}
Comments
7 pages, 4 figures