Wu Ling-Na, Nettersheim Jens, Feß Julian, Schnell Alexander, Burgardt Sabrina, Hiebel Silvia, Adam Daniel, Eckardt André, Widera Artur
Institut für Theoretische Physik, Technische Universität Berlin, Hardenbergstraße 36, 10623, Berlin, Germany.
Center for Theoretical Physics and School of Science, Hainan University, Haikou, 570228, China.
Nat Commun. 2024 Feb 24;15(1):1714. doi: 10.1038/s41467-024-46054-9.
Near continuous phase transitions, universal power-law scaling, characterized by critical exponents, emerges. This behavior reflects the singular responses of physical systems to continuous control parameters like temperature or external fields. Universal scaling extends to non-equilibrium dynamics in isolated quantum systems after a quench, where time takes the role of the control parameter. Our research unveils critical scaling in time also during the relaxation dynamics of an open quantum system. Here we experimentally realize such a system by the spin of individual Cesium atoms dissipatively coupled through spin-exchange processes to a bath of ultracold Rubidium atoms. Through a finite-size scaling analysis of the entropy dynamics via numerical simulations, we identify a critical point in time in the thermodynamic limit. This critical point is accompanied by the divergence of a characteristic length, which is described by critical exponents that turn out to be unaffected by system specifics.
近连续相变出现了,其具有以临界指数为特征的普适幂律标度。这种行为反映了物理系统对诸如温度或外场等连续控制参数的奇异响应。普适标度在量子猝灭后孤立量子系统的非平衡动力学中也适用,此时时间起到控制参数的作用。我们的研究还揭示了开放量子系统弛豫动力学过程中时间的临界标度。在这里,我们通过单个铯原子的自旋,经自旋交换过程与超冷铷原子浴耗散耦合,实验实现了这样一个系统。通过数值模拟对熵动力学进行有限尺寸标度分析,我们在热力学极限下确定了一个时间临界点。这个临界点伴随着一个特征长度的发散,该特征长度由临界指数描述,结果表明这些临界指数不受系统细节的影响。