论文标题

直接观察流体动力和局部预浮力化

Direct observation of hydrodynamization and local prethermalization

论文作者

Le, Yuan, Zhang, Yicheng, Gopalakrishnan, Sarang, Rigol, Marcos, Weiss, David S.

论文摘要

在建立局部热平衡之前,流体动力学准确地描述了相对论的重型离子碰撞实验。这种出乎意料的流体动力学快速发作 - 发生在最快的可用时间范围内 - 称为流体动力。当相互作用的量子系统用能量密度远高于其初始能量密度的能量密度时,就会发生这种情况。在流体动力化过程中,能量将在非常不同的能量尺度上重新分布。流体动力在动量模式之间进行了局部平衡,这是在几乎可集成的系统中的局部细头化,或在不可融合系统中的局部热化。量子动力学的许多理论假定局部(PER)热化,但相关的时间表尚未进行定量研究。在这里,我们使用1D玻色气体的阵列直接观察流体动力和局部预灭。在应用Bragg散射脉冲之后,在遥远动量模式之间的能量快速重新分布中,流体动物化是显而易见的,该模式发生在与Bragg峰值能量相关的时间尺度上。在附近动量模式之间的职业重新分布较慢时,可以看到局部预防化。我们发现,系统中局部pretermalization的时间尺度与所涉及的动量成反比。在流体动力和局部pr预皮过程中,现有理论无法定量对我们的实验进行建模。 Tonks-Girardeau限制中的精确理论计算在质量上显示出相似的特征。

Hydrodynamics accurately describes relativistic heavy-ion collision experiments well before local thermal equilibrium is established. This unexpectedly rapid onset of hydrodynamics -- which takes place on the fastest available timescale -- is called hydrodynamization. It occurs when an interacting quantum system is quenched with an energy density that is much greater than its initial energy density. During hydrodynamization, energy gets redistributed across very different energy scales. Hydrodynamization precedes local equilibration among momentum modes, which is local prethermalization to a generalized Gibbs ensemble in nearly integrable systems or local thermalization in non-integrable systems. Many theories of quantum dynamics postulate local (pre)thermalization, but the associated timescale has not been quantitatively studied. Here we use an array of 1D Bose gases to directly observe both hydrodynamization and local prethermalization. After we apply a Bragg scattering pulse, hydrodynamization is evident in the fast redistribution of energy among distant momentum modes, which occurs on timescales associated with the Bragg peak energies. Local prethermalization can be seen in the slower redistribution of occupation among nearby momentum modes. We find that the time scale for local prethermalization in our system is inversely proportional to the momenta involved. During hydrodynamization and local prethermalization, existing theories cannot quantitatively model our experiment. Exact theoretical calculations in the Tonks-Girardeau limit show qualitatively similar features.

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