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Signatures of chaos and thermalization in the dynamics of many-body quantum systems

机译:许多体量子系统动力学中混沌和热化的签名

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摘要

We extend the results of two of our papers [Phys. Rev. A 94, 041603R (2016) and Phys. Rev. B 97, 060303R (2018)] that touch upon the intimately connected topics of quantum chaos and thermalization. In the first, we argued that when the initial state of isolated lattice many-body quantum systems is chaotic, the power-law decay of the survival probability is caused by the bounds in the spectrum, which thus anticipates thermalization. In the current work, we provide stronger numerical support for the onset of these algebraic behaviors. In the second paper, we demonstrated that the correlation hole, which is a direct signature of quantum chaos revealed by the evolution of the survival probability at times beyond the power-law decay, appears also for other observables. In the present work, we investigate the correlation hole in the chaotic regime and in the vicinity to a many-body localized phase for the spin density imbalance, which is an observable studied experimentally.
机译:我们延长了我们两篇论文的结果[物理。 Rev. A 94,041603R(2016)和Phy。 Rev. B 97,060303R(2018)]这种触摸Quantum混沌和热化的紧密相关的主题。 首先,我们认为,当隔离晶格的初始状态是混乱的时,存活概率的电力 - 法衰减是由光谱中的界限引起的,因此预期热化。 在当前的工作中,我们为这些代数行为的开始提供更强的数值支持。 在第二篇论文中,我们证明了具有在超出电力法衰减超出的存活概率的演变的量子混沌的直接签名的相关孔也出现了其他可观察到。 在本作工作中,我们研究了混沌制度中的相关孔,并且在附近对旋转密度不平衡的许多身体局部相位,这是实验研究的可观察者。

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