Ren Jie, Li Qiaoyi, Li Wei, Cai Zi, Wang Xiaoqun
Department of Physics and Jiangsu Laboratory of Advanced Functional Material, Changshu Institute of Technology, Changshu 215500, China.
Key Laboratory of Artificial Structures and Quantum Control, Department of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, People's Republic of China.
Phys Rev Lett. 2020 Apr 3;124(13):130602. doi: 10.1103/PhysRevLett.124.130602.
Dynamical universality is the observation that the dynamical properties of different systems might exhibit universal behavior that are independent of the system details. In this Letter, we study the longtime dynamics of a one-dimensional noisy quantum magnetic model, and find that even though the system is inevitably driven to an infinite temperature state, the relaxation dynamics towards such a featureless state can be highly nontrivial and universal. The effect of various mode-coupling mechanisms (external potential, disorder, interaction, and the interplay between them) as well as the conservation law on the longtime dynamics of the systems have been studied, and their relevance with current ultracold atomic experiments has been discussed.
动力学普遍性是指观察到不同系统的动力学性质可能表现出与系统细节无关的普遍行为。在本信函中,我们研究了一维含噪量子磁体模型的长时间动力学,发现尽管该系统不可避免地被驱动至无限温度状态,但朝向这种无特征状态的弛豫动力学可能是高度非平凡且具有普遍性的。我们研究了各种模式耦合机制(外部势、无序、相互作用以及它们之间的相互作用)以及守恒定律对系统长时间动力学的影响,并讨论了它们与当前超冷原子实验的相关性。