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Plasmon excitation using a dielectric slab with diffusion type photorefractive nonlinearity

机译:使用具有扩散型光折变非线性的介电平板进行等离子体激发

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We investigated numerically the TM electric field solutions of a dielectric slab formed by a photorefractive crystal with diffusion-type nonlinearity and limited by two metallic films. This study allows us the analysis of nonlinear surface optical waves as nonlinear solutions of the photorefractive crystal slab. Additionally, we analyzed the influence of these nonlinear solutions to excite surface plasmon-polariton waves at the metallic interfaces. In this case, the coupling between plasmons and nonlinear solutions it is possible because only TM electromagnetic waves are supported by a metal-dielectric planar waveguide. Here, we solved the vectorial and nonlinear wave equation using an iterative method based in self-autoconsistency. With this algorithm, the coupling between the waveguide modes and the surface plasmon-polariton waves are systematically investigated. The results obtained in this work are reproducible and contributes with new information for the design of tunable plasmonic devices based in nonlinear photorefractive crystals.
机译:我们用数值方法研究了由具有扩散型非线性并且受两个金属膜限制的光折变晶体形成的电介质平板的TM电场解。这项研究使我们能够分析非线性表面光波,作为光折变晶体平板的非线性解决方案。此外,我们分析了这些非线性解决方案在金属界面激发表面等离激元-极化子波的影响。在这种情况下,等离激元与非线性解之间的耦合是可能的,因为金属介电平面波导仅支持TM电磁波。在这里,我们使用基于自自动一致性的迭代方法求解了矢量和非线性波动方程。利用该算法,系统地研究了波导模式与表面等离子体激元-极化子波之间的耦合。在这项工作中获得的结果是可重现的,并为基于非线性光折变晶体的可调谐等离子体激元器件的设计提供了新的信息。

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