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Localized structures in nonlinear optical cavities

机译:非线性光学腔中的局部结构

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Dissipative localized structures, also known as cavity solitons, arise in the transverse plane of several nonlinear optical devices. We present two general mechanisms for their formation and some scenarios for their instability. In situations of coexistence of a homogeneous and a pattern state, we characterize excitable behavior mediated by localized structures. In this scenario, excitability emerges directly from the spatial dependence since it is absent in the purely temporal dynamics. In situations of coexistence of two homogeneous states, we discuss localized structures either due to the interaction of front tails (dark ring cavity solitons) or due to a balance between curvature effects and modulational instabilities of front solutions (stable droplets).
机译:耗散的局部结构(也称为腔孤子)出现在几个非线性光学设备的横向平面中。我们为它们的形成提供了两种通用的机制,并为它们的不稳定提供了一些方案。在均质和图案状态共存的情况下,我们表征了由局部结构介导的兴奋性行为。在这种情况下,兴奋性直接从空间依赖性中显现出来,因为它在纯粹的时间动力学中是不存在的。在两种均匀状态共存的情况下,我们讨论的是局部结构,要么是由于前尾的相互作用(暗环腔孤子),要么是由于曲率效应与前溶液(稳定液滴)的调制不稳定性之间的平衡所致。

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