论文标题
二维光子流体中的非平衡前状态
Non-equilibrium pre-thermal states in a two-dimensional photon fluid
论文作者
论文摘要
热化是一个动力学过程,多体系统朝着最大化其熵的热平衡状态发展。但是,在某些情况下,热平衡的建立显着减慢,并且可以出现前热平衡的现象。它描述了扰动后的初始放松对准态状态。在具有与热对应物相似的特性的同时,热前状态表现出对初始条件的部分记忆。在这里,我们观察到相互作用淬灭后的非平衡,二维(2D)光流体的动力学形成。直接测量流体的一阶相关函数揭示了远程代数相关的自发出现在轻锥中传播,从而提供了准稳态的明确特征,与2D热超级流体非常相似。给出了代数顺序的详细实验表征,并与最新的理论预测一致,证明了初始条件的部分记忆。此外,通过受控的流体波动增加,我们揭开了从代数到短距离(指数)相关性的交叉,类似于著名的kosterlitz-在热平衡处观察到的无效过渡。这些结果表明存在热力学相变的非平衡前体。
Thermalization is the dynamical process by which a many-body system evolves toward a thermal equilibrium state that maximizes its entropy. In certain cases, however, the establishment of thermal equilibrium is significantly slowed down and a phenomenon of pre-thermalization can emerge. It describes the initial relaxation toward a quasi-steady state after a perturbation. While having similar properties to their thermal counterparts, pre-thermal states exhibit a partial memory of initial conditions. Here, we observe the dynamical formation of a pre-thermal state in a non-equilibrium, two-dimensional (2D) fluid of light after an interaction quench. Direct measurements of the fluid's first-order correlation function reveal the spontaneous emergence of long-range algebraic correlations spreading within a light-cone, providing a clear signature of a quasi steady-state strongly similar to a 2D thermal superfluid. Detailed experimental characterization of the algebraic order is presented and a partial memory of the initial conditions is demonstrated, in agreement with recent theoretical predictions. Furthermore, by a controlled increase of the fluid fluctuations, we unveil a cross-over from algebraic to short-range (exponential) correlations, analogous to the celebrated Kosterlitz-Thouless transition observed at thermal equilibrium. These results suggest the existence of non-equilibrium precursors for thermodynamic phase transitions.