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Vortex dynamics of counterpropagting laser beams in photorefractive materials

机译:光折射材料中反向传播激光束的涡旋动力学

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摘要

We study vortex patterns of counterpropagating laser beams in a photorefractive crystal, with or without the background photonic lattice. The vortices are effectively planar and have two "flavors" because there are two opposite directions of beam propagation. In a certain parameter range, the vortices form stable equilibrium configurations which we study using the methods of statistical field theory and generalize the Berezinsky-Kosterlitz-Thouless transition of the XY model to the "two-flavor" case. In the nonequilibrium regime, the patterns exhibit an Andronov-Hopf bifurcation which may lead to oscillations (limit cycle), chaos or decay to zero intensity due to radiation losses. We show how to identify various pathways toward instability from intensity patterns, i.e. from experiment.
机译:我们研究具有或不具有背景光子晶格的光折射晶体中反向传播的激光束的涡旋图。旋涡实际上是平面的,并且具有两个“风味”,因为光束传播有两个相反的方向。在一定的参数范围内,涡旋形成稳定的平衡构型,我们将使用统计场论的方法对其进行研究,并将XY模型的Berezinsky-Kosterlitz-Thouless过渡推广到“双味”情况。在非平衡状态下,模式显示出Andronov-Hopf分叉,这可能会导致振荡(极限循环),由于辐射损失而混乱或衰减至零强度。我们展示了如何从强度模式(即实验)中识别出导致不稳定的各种途径。

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