论文标题
温度诱导的无序定位
Temperature-Induced Disorder-Free Localization
论文作者
论文摘要
无障碍的定位是强烈的恐怖性破裂的范式,当系统以叠加量初始化大量仪表扇区时,已证明在晶格仪理论的全球淬火中发生。在这里,我们表明,在热吉布斯集合中准备系统,而没有不同轨迹扇区之间的任何连贯性也会引起无序的定位,温度充当无序的强度。我们通过计算$ \ mathrm {u}(1)$和$ \ mathbb {z} _2 $ lattice量表理论在$ \ mathrm {u}(1)$ \ mathrm {u}(1)$ \ mathrm {u}(1)$ \ mathrm {u}(1)中的淬火动力学的动态来证明我们的发现,这表现出更大的定位,随着ENSEMBLEMEMBLEBLEMEMEMBELBELBELBELBELBELBELLIAME的较高定位。此外,我们展示了如何在局部假基因生成器中添加线性的术语如何由于富集的局部对称性的动态出现而增强温度诱导的无疾病定位。我们的工作将无序定位的领域扩展到有限的体温物理学中,并违反直觉表明某些量子非癌现象可以在高温下变得更加突出。我们讨论了当前量子模拟和计算平台中结论的可访问性。
Disorder-free localization is a paradigm of strong ergodicity breaking that has been shown to occur in global quenches of lattice gauge theories when the system is initialized in a superposition over an extensive number of gauge sectors. Here, we show that preparing the system in a thermal Gibbs ensemble without any coherences between different gauge sectors also gives rise to disorder-free localization, with temperature acting as a disorder strength. We demonstrate our findings by calculating the quench dynamics of the imbalance of thermal ensembles in both $\mathrm{U}(1)$ and $\mathbb{Z}_2$ lattice gauge theories through exact diagonalization, showing greater localization with increasing ensemble temperature. Furthermore, we show how adding terms linear in local pseudogenerators can enhance temperature-induced disorder-free localization due to the dynamical emergence of an enriched local symmetry. Our work expands the realm of disorder-free localization into finite-temperature physics, and shows counterintuitively that certain quantum nonergodic phenomena can become more prominent at high temperature. We discuss the accessibility of our conclusions in current quantum simulation and computing platforms.