Odent V, Louvergneaux E, Clerc M G, Andrade-Silva I
Univ. Lille, CNRS, UMR 8523 - PhLAM - Physique des Lasers Atomes et Molécules, F-59000 Lille, France.
Departamento de Física, Facultad de Ciencias Físicas y Matemáticas, Universidad de Chile, Casilla 487-3, Santiago, Chile.
Phys Rev E. 2016 Nov;94(5-1):052220. doi: 10.1103/PhysRevE.94.052220. Epub 2016 Nov 28.
When nonequilibrium extended homogeneous systems exhibit multistability, it leads to the presence of domain walls between the existing equilibria. Depending on the stability of the steady states, the dynamics differs. Here, we consider the interface dynamics in the case of a spatially inhomogeneous system, namely, an optical system where the control parameter is spatially Gaussian. Then interfaces connect the monostable and the bistable nonuniform states that are associated with two distinct spatial regions. The coexistence of these two regions of different stability induces relaxation dynamics and the propagation of a wall with a time-dependent speed. We emphasize analytically these two dynamical behaviors using a generic bistable model. Experimentally, an inhomogeneous Gaussian light beam traveling through either a dye-doped liquid crystal cell or a Kerr cavity depicts these behaviors, in agreement with the theoretical predictions.
当非平衡扩展均匀系统表现出多稳态时,会导致现有平衡态之间存在畴壁。根据稳态的稳定性,动力学情况会有所不同。在此,我们考虑空间非均匀系统情况下的界面动力学,即一种控制参数在空间上呈高斯分布的光学系统。此时,界面连接着与两个不同空间区域相关的单稳态和双稳态非均匀态。这两个不同稳定性区域的共存会引发弛豫动力学以及具有时间依赖速度的壁的传播。我们使用一个通用的双稳态模型从理论上着重分析这两种动力学行为。在实验中,一束非均匀高斯光束穿过掺杂染料的液晶盒或克尔腔时呈现出这些行为,与理论预测相符。