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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Role of optical nonlinearity on transverse localization of light in a disordered one-dimensional optical waveguide lattice
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Role of optical nonlinearity on transverse localization of light in a disordered one-dimensional optical waveguide lattice

机译:光学非线性对无序一维光波导晶格中光横向定位的作用

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摘要

We report a detailed numerical investigation on transverse localization of light in a 1D disordered lattice consisting of a large array of coupled waveguides in the presence of nonlinearity in the medium. Our study reveals that the presence of a focusing type of nonlinearity favors faster localization of light while a defocusing type of nonlinearity degrades the quality of localization. It is shown that presence of either of these could over-shadow localization of light unless the strength of disorder is sufficiently strong. Influence of the input beam width on propagation of light in such a disordered nonlinear medium has also been discussed. The present study should be useful in potential applications, in which one could exploit dominance of focusing nonlinearity on transverse localization of light in a disordered medium.
机译:我们报告详细的数值研究的横向横向光在一维无序的晶格中,由大耦合的波导阵列在介质中的非线性存在。我们的研究表明,聚焦类型的非线性的存在有利于光的更快定位,而散焦类型的非线性会降低定位质量。结果表明,除非无序的强度足够强,否则这两种方法的存在都可能使光的定位蒙上阴影。还讨论了输入光束宽度对光在这种无序非线性介质中传播的影响。本研究应在潜在的应用中有用,在这种应用中,可以利用将非线性集中在无序介质中光的横向位置上的优势。

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