Institute for Quantum Optics and Quantum Information of the Austrian Academy of Sciences, 6020 Innsbruck, Austria.
Institute for Theoretical Physics, University of Innsbruck, 6020 Innsbruck, Austria.
Phys Rev Lett. 2015 Oct 2;115(14):140602. doi: 10.1103/PhysRevLett.115.140602.
Dynamical quantum phase transitions (DQPTs) at critical times appear as nonanalyticities during nonequilibrium quantum real-time evolution. Although there is evidence for a close relationship between DQPTs and equilibrium phase transitions, a major challenge is still to connect to fundamental concepts such as scaling and universality. In this work, renormalization group transformations in complex parameter space are formulated for quantum quenches in Ising models showing that the DQPTs are critical points associated with unstable fixed points of equilibrium Ising models. Therefore, these DQPTs obey scaling and universality. On the basis of numerical simulations, signatures of these DQPTs in the dynamical buildup of spin correlations are found with an associated power-law scaling determined solely by the fixed point's universality class. An outlook is given on how to explore this dynamical scaling experimentally in systems of trapped ions.
动力学量子相变(DQPT)在临界点时会在非平衡量子实时演化中表现出非解析性。虽然有证据表明 DQPT 与平衡相变之间存在密切关系,但一个主要的挑战仍然是将其与缩放和普遍性等基本概念联系起来。在这项工作中,针对呈现 DQPT 的伊辛模型中的量子淬火,在复数参数空间中制定了重整化群变换,结果表明 DQPT 是与平衡伊辛模型的不稳定固定点相关的临界点。因此,这些 DQPT 遵守缩放和普遍性。基于数值模拟,在自旋相关性的动态建立中发现了这些 DQPT 的特征,其关联的幂律缩放仅由固定点的普遍性类确定。展望了如何在囚禁离子系统中通过实验探索这种动力学缩放。