论文标题
低能量的预皮相位和非线性踢动物的跨界
Low-energy prethermal phase and crossover to thermalization in nonlinear kicked rotors
论文作者
论文摘要
在存在相互作用的情况下,定期驱动的量子系统通常会热能到无限温度状态。然而,最近表明,在与局部相互作用的随机踢旋翼中,通过在弱波动的随机相位稳定的状态下运行,这种长期均衡可以强烈延迟,从而导致亚稳态热整体的出现。在这里,我们表明,当随机动能小于相互作用能量时,该系统实际上表现出更丰富的动力学相图,其中包括一个低能量的热前相,其特征在于动量空间中相关性的轻度传播。我们开发了该阶段的流体动力学理论,并与精确的数值模拟找到了非常好的一致性。我们最终探讨了系统的完整动力学相图,并发现向全热化的过渡的特征是相对尖锐的交叉。
In the presence of interactions, periodically-driven quantum systems generically thermalize to an infinite-temperature state. Recently, however, it was shown that in random kicked rotors with local interactions, this long-time equilibrium could be strongly delayed by operating in a regime of weakly fluctuating random phases, leading to the emergence of a metastable thermal ensemble. Here we show that when the random kinetic energy is smaller than the interaction energy, this system in fact exhibits a much richer dynamical phase diagram, which includes a low-energy pre-thermal phase characterized by a light-cone spreading of correlations in momentum space. We develop a hydrodynamic theory of this phase and find a very good agreement with exact numerical simulations. We finally explore the full dynamical phase diagram of the system and find that the transition toward full thermalization is characterized by relatively sharp crossovers.