Nonlinear refraction in optical lattices induced by the wave-soliton interference

Y. Prylepskiy, S. Derevyanko, S. Gredeskul
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Abstract

In the framework of 1D Nonlinear Shrödinger Equation (NSE) we demonstrate how one can control the refractive angle of a fundamental soliton beam passing through an optical lattice, by adjusting either the shape of an individual waveguide or the relative positions of waveguides. Even for a single scatterer its shape has a nontrivial effect on the refraction direction. In the case of shallow modulation we provide an analytical description based of the effect on the soliton perturbation theory. When one considers a lattice of scatterers, there emanates an additional form factor in the radiation density (RD) of emitted waves referring to the wave-soliton beating and interference inside the lattice. We concentrate on the results for two cases: periodic lattice and disordered lattice of scattering shapes.
波-孤子干涉引起的光学晶格非线性折射
在一维非线性Shrödinger方程(NSE)的框架下,我们演示了如何通过调整单个波导的形状或波导的相对位置来控制基本孤子光束通过光学晶格的折射角。即使对于单个散射体,其形状对折射方向也有不小的影响。在浅调制的情况下,我们给出了基于对孤子微扰理论影响的解析描述。当考虑散射体晶格时,在发射波的辐射密度(RD)中有一个附加的形状因子,涉及到波-孤子的跳动和晶格内的干涉。我们集中讨论了两种情况的结果:周期性晶格和无序晶格的散射形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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