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    Observation of Near-Critical Kibble-Zurek Scaling in Rydberg Atom Arrays

    Tao Zhang1,*, Hanteng Wang2,*, Wenjun Zhang1,*, Yuqing Wang1,*, Angrui Du1, Ziqi Li1, Yujia Wu1, Chengshu Li2, Jiazhong Hu3,† et al.

    Hui Zhai2,‡ and Wenlan Chen1,4,§

    • *These authors contributed equally to this work.
    • †Contact author: hujiazhong01@ultracold.cn
    • ‡Contact author: hzhai@tsinghua.edu.cn
    • §Contact author: cwlaser@mail.tsinghua.edu.cn

    Phys. Rev. Lett. 135, 093403 – Published 27 August, 2025

    DOI: https://doi.org/10.1103/2gwz-65w1

    Abstract

    The Kibble-Zurek scaling reveals the universal dynamics when a system is linearly ramped across a symmetry-breaking phase transition. However, in reality, inevitable finite-size effects or symmetry-breaking perturbations can often smear out the critical point and render the phase transition into a smooth crossover. In this Letter, we show experimentally that the precise Kibble-Zurek scaling can be retained in the near-critical crossover regime, not necessarily crossing the critical point strictly. The key ingredient to achieving this near-critical Kibble-Zurek scaling is that the system size and the symmetry-breaking field must be appropriately scaled following the variation of ramping speeds. The experiment is performed in a reconfigurable Rydberg atom array platform, where the Rydberg blockade effect induces a Z2 symmetry-breaking transition. The atom array platform enables precise control of the system size and the zigzag geometry as a symmetry-breaking field. Therefore, we can demonstrate notable differences in the precision of the Kibble-Zurek scaling with or without properly scaling the system size and the zigzag geometry. Our results strengthen the Kibble-Zurek scaling as an increasingly valuable tool for investigating phase transition in quantum simulation platforms.

    Physics Subject Headings (PhySH)

    Corrections

    9 October, 2025

    Correction: The email address in the byline footnote for the ninth author was incorrect and has been fixed.

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