论文标题

通过耗散的空间和时间顺序之间的可调性非平衡相变

Tunable Non-equilibrium Phase Transitions between Spatial and Temporal Order through Dissipation

论文作者

Zhang, Zhao, Dreon, Davide, Esslinger, Tilman, Jaksch, Dieter, Buca, Berislav, Donner, Tobias

论文摘要

我们提出了一个实验,该实验耦合到耗散光腔的驱动量子气体,该实验实现了一种新型的空间和时间阶之间的远距离平衡相变。过渡的控制参数是驱动频率和空腔共振之间的失沟。对于阴性的失调,该系统具有空间有序的相位,而正呼吸会导致具有空间顺序和持续振荡的相位,我们称之为耗散时空晶格。我们给出了这种超级后期过渡的数值和分析证据,并表明时空晶格起源于腔耗散。在这两个方案中,原子都通过均匀加速或突然向更高的动量状态进行加速运输。我们的工作为均衡时不可能的物质时间阶段提供了观点。

We propose an experiment with a driven quantum gas coupled to a dissipative optical cavity that realizes a novel kind of far-from-equilibrium phase transition between spatial and temporal order. The control parameter of the transition is the detuning between the drive frequency and the cavity resonance. For negative detunings, the system features a spatially ordered phase, while positive detunings lead to a phase with both spatial order and persistent oscillations, which we call dissipative spatio-temporal lattice. We give numerical and analytical evidence for this superradiant phase transition and show that the spatio-temporal lattice originates from cavity dissipation. In both regimes the atoms are subject to an accelerated transport, either via a uniform acceleration or via abrupt transitions to higher momentum states. Our work provides perspectives for temporal phases of matter that are not possible at equilibrium.

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