论文标题
观察由于倾斜的费米 - 哈伯链的动力学限制而引起的非连接性
Observing non-ergodicity due to kinetic constraints in tilted Fermi-Hubbard chains
论文作者
论文摘要
孤立的量子多体系统的热化与量子信息理论的基本问题密切相关。尽管由于许多保守数量广泛的保守量,可集成或多体局部系统表现出非癌性行为,但最近的理论研究已经确定了这两个极端限制之间的各种各样的外来现象。倾斜的一维费米 - 哈伯德模型,在超电原子的实验中很容易访问,这是一个有趣的操场,可在无疾病的系统中研究非共性行为。在理论上在某些限制案例中建立了非恋性行为,但对该模型的复杂热化特性没有完全理解。在这项工作中,我们在实验中研究了初始电荷密度波的放松,并在广泛的参数上找到了寿命非常长的初始状态。通过清洁系统的数值模拟,我们的观察结果很好地复制了。使用分析计算,我们进一步提供了对这种行为的详细的微观理解,这可以归因于新兴的动力学约束。
The thermalization of isolated quantum many-body systems is deeply related to fundamental questions of quantum information theory. While integrable or many-body localized systems display non-ergodic behavior due to extensively many conserved quantities, recent theoretical studies have identified a rich variety of more exotic phenomena in between these two extreme limits. The tilted one-dimensional Fermi-Hubbard model, which is readily accessible in experiments with ultracold atoms, emerged as an intriguing playground to study non-ergodic behavior in a clean disorder-free system. While non-ergodic behavior was established theoretically in certain limiting cases, there is no complete understanding of the complex thermalization properties of this model. In this work, we experimentally study the relaxation of an initial charge-density wave and find a remarkably long-lived initial-state memory over a wide range of parameters. Our observations are well reproduced by numerical simulations of a clean system. Using analytical calculations we further provide a detailed microscopic understanding of this behavior, which can be attributed to emergent kinetic constraints.