Jeyaretnam Jared, Bhore Tanmay, Osborne Jesse J, Halimeh Jad C, Papić Zlatko
School of Physics and Astronomy, University of Leeds, Leeds, UK.
School of Mathematics and Physics, The University of Queensland, St. Lucia, QLD Australia.
Commun Phys. 2025;8(1):172. doi: 10.1038/s42005-025-02039-8. Epub 2025 Apr 18.
Lattice gauge theories, the discrete counterparts of continuum gauge theories, provide a rich framework for studying non-equilibrium quantum dynamics. Recent studies suggest disorder-free localization in the lattice Schwinger model, but its origin remains unclear. Using a combination of analytical and numerical methods, we show that Hilbert space fragmentation emerges in the strong coupling limit, constraining particle dynamics and causing sharp jumps in entanglement entropy growth within charge sectors. By analyzing jump statistics, we find that entanglement growth follows a single-logarithmic or weak power-law dependence on time, rather than a double-logarithmic form. This suggests a single ergodicity-breaking regime that mimics many-body localization in finite systems due to fragmentation effects. Our findings clarify the nature of disorder-free localization and its distinction from conventional many-body localization, highlighting how gauge constraints influence thermalization in lattice gauge theories.
格点规范理论是连续统规范理论的离散对应物,为研究非平衡量子动力学提供了一个丰富的框架。最近的研究表明,在格点施温格模型中存在无无序局域化现象,但其起源仍不清楚。通过结合解析和数值方法,我们表明,在强耦合极限下会出现希尔伯特空间碎片化,这限制了粒子动力学,并导致电荷扇区内纠缠熵增长出现急剧跳跃。通过分析跳跃统计,我们发现纠缠增长对时间的依赖遵循单对数或弱幂律形式,而不是双对数形式。这表明存在一个单一的遍历性破缺机制,由于碎片化效应,它类似于有限系统中的多体局域化。我们的发现阐明了无无序局域化的本质及其与传统多体局域化的区别,突出了规范约束如何影响格点规范理论中的热化过程。