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Vectorial nonlinear propagation in silicon nanowire waveguides: polarization effects

机译:硅纳米线波导中的矢量非线性传播:极化效应

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摘要

A comprehensive theory is developed for describing the nonlinear propagation of optical pulses through silicon waveguides with nanoscale dimensions. Our theory includes not only the vectorial nature of optical modes but also the coupling between the transverse electric and magnetic modes occurring for arbitrarily polarized optical fields. We have studied the dependence of relevant nonlinear parameters on waveguide dimensions and found a class of waveguide geometries for which self-phase modulation can have a dramatic impact on the polarization state of the optical field. Self-induced polarization changes are studied for both the continuous and pulsed optical fields propagating in silicon waveguides. We also discuss the possibility of using these effects for intensity discrimination and pulse compression.
机译:建立了一种综合理论来描述光脉冲通过具有纳米尺度尺寸的硅波导的非线性传播。我们的理论不仅包括光学模式的矢量性质,还包括针对任意偏振光场发生的横向电模式和磁模式之间的耦合。我们研究了相关非线性参数对波导尺寸的依赖性,并发现了一类波导几何形状,对于这些几何形状,自相位调制可能会对光场的偏振态产生巨大影响。研究了在硅波导中传播的连续和脉冲光场的自感应偏振变化。我们还将讨论将这些效应用于强度区分和脉冲压缩的可能性。

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