论文标题
平均场相等耦合光子网络中的关键点现象和有限大小的缩放
Critical-point phenomena and finite-size scaling in mean-field equal-coupling photonic networks
论文作者
论文摘要
通过耦合模式的非线性运动方程的时间演化,研究了多模等耦合光子网络中的平均场光相变。与复杂值模式和两个组分旋转之间对应关系建立的相互作用经典旋转的统计力学模型的类比,用于定义两组分和单组分订单参数。进行全面的有限尺寸缩放分析,以估计由每模式光能驱动的二阶相变的临界点和指数。每当适用时,将系统的平衡特性与精确的结果进行比较。考虑到各种参数设置,我们的结果证实了过渡的平均视野性质,并在非线性 - 能量密度相图中建立了临界线。临界缩放导致推断上临界尺寸$ d_c = 4 $。通过适当的零温度极限的动力学温度建立了与热力学量的连接。在低温阶段(每种模式低能),旋转对齐。在高温阶段(每种模式大能量)中,旋转彼此独立旋转。
The mean-field optical phase transition in multimode equal-coupling photonic networks is studied by temporal evolution of the nonlinear equations of motion of the coupled modes. Analogies to statistical mechanics models of interacting classical spins, built upon the correspondence between complex-valued modes and two-component spins, are employed to define two-component and single-component order parameters. A comprehensive finite-size scaling analysis is performed to estimate critical points and exponents of a second-order phase transition, driven by the optical energy per mode. Equilibrium properties of the system are compared to exact results whenever applicable. Considering various parameter settings, our results confirm the mean-field nature of the transition and establish the critical line in the nonlinearity--energy-density phase diagram. Critical scaling leads to infer the upper critical dimension $d_c=4$. Connection to thermodynamic quantities is established by means of a kinetic temperature with appropriate zero-temperature limit. In the low temperature phase (low energy per mode), spins align. In the high temperature phase (large energy per mode), spins rotate independent of one another.