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Nonequilibrium Phase Transition in a Two-Dimensional Driven Open Quantum System

机译:二维驱动开放量子系统中非识别阶段过渡

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The Berezinskii-Kosterlitz-Thouless mechanism, in which a phase transition is mediated by the proliferation of topological defects, governs the critical behavior of a wide range of equilibrium two-dimensional systems with a continuous symmetry, ranging from spin systems to superconducting thin films and two-dimensional Bose fluids, such as liquid helium and ultracold atoms. We show here that this phenomenon is not restricted to thermal equilibrium, rather it survives more generally in a dissipative highly nonequilibrium system driven into a steady state. By considering a quantum fluid of polaritons of an experimentally relevant size, in the so-called optical parametric oscillator regime, we demonstrate that it indeed undergoes a phase transition associated with a vortex binding-unbinding mechanism. Yet, the exponent of the power-law decay of the first-order correlation function in the (algebraically) ordered phase can exceed the equilibrium upper limit: this shows that the ordered phase of driven-dissipative systems can sustain a higher level of collective excitations before the order is destroyed by topological defects. Our work suggests that the macroscopic coherence phenomena, observed recently in interacting two-dimensional light-matter systems, result from a nonequilibrium phase transition of the Berezinskii-Kosterlitz-Thouless rather than the Bose-Einstein condensation type.
机译:Berezinskii-Kosterlitz-Thouslus机制,其中通过拓扑缺陷的增殖介导相变的机制,管辖一种具有连续对称的各种平衡二维系统的临界行为,从旋转系统到超导薄膜和超导薄膜二维瓶流体,例如液氦和超级原子。在这里,我们在这里展示这种现象不限于热平衡,而是在耗散高度非QuibiBribrium系统中更普遍存在稳定状态中的存活率。通过考虑实验相关尺寸的极性恒星的量子流体,在所谓的光学参数振荡器方案中,我们证明它确实经历了与涡旋结合解除机制相关的相变。然而,在(代数)有序相中的一阶相关函数的权力衰减的指数可以超过平衡上限:这表明驱动 - 耗散系统的有序阶段可以维持更高水平的集体激励在拓扑缺陷销毁订单之前。我们的作品表明,最近在相互作用的二维光物质系统中观察到的宏观相干现象,由Berezinskii-Ksterlitlitz-Thousls而不是Bose-Einstein缩合型产生的非预测相转变产生。

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