Brenes Marlon, Dalmonte Marcello, Heyl Markus, Scardicchio Antonello
The Abdus Salam International Center for Theoretical Physics, Strada Costiera 11, 34151 Trieste, Italy.
Max Planck Institute for the Physics of Complex Systems, Dresden 01187, Germany.
Phys Rev Lett. 2018 Jan 19;120(3):030601. doi: 10.1103/PhysRevLett.120.030601.
We show how lattice gauge theories can display many-body localization dynamics in the absence of disorder. Our starting point is the observation that, for some generic translationally invariant states, the Gauss law effectively induces a dynamics which can be described as a disorder average over gauge superselection sectors. We carry out extensive exact simulations on the real-time dynamics of a lattice Schwinger model, describing the coupling between U(1) gauge fields and staggered fermions. Our results show how memory effects and slow, double-logarithmic entanglement growth are present in a broad regime of parameters-in particular, for sufficiently large interactions. These findings are immediately relevant to cold atoms and trapped ion experiments realizing dynamical gauge fields and suggest a new and universal link between confinement and entanglement dynamics in the many-body localized phase of lattice models.
我们展示了格点规范理论如何在没有无序的情况下展现多体局域化动力学。我们的出发点是观察到,对于某些一般的平移不变态,高斯定律有效地诱导出一种动力学,这种动力学可以描述为规范超选择区上的无序平均。我们对格点施温格模型的实时动力学进行了广泛的精确模拟,该模型描述了U(1)规范场与交错费米子之间的耦合。我们的结果表明,在广泛的参数范围内,特别是对于足够大的相互作用,记忆效应和缓慢的双对数纠缠增长是存在的。这些发现与实现动态规范场的冷原子和囚禁离子实验直接相关,并暗示了格点模型多体局域化相中禁闭与纠缠动力学之间一种新的普遍联系。