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Excitation of multiple surface-plasmon-polariton waves and waveguide modes in a 1D photonic crystal atop a 2D metal grating

机译:在2D金属光栅上方的1D光子晶体中激发多个表面等离子体激元波和波导模式

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The Floquet theory and the transfer-matrix approach were used to investigate the excitation of surface-plasmon-polariton (SPP) waves and waveguide modes in a structure comprising a one-dimensional photonic crystal (1D PC) of finite thickness on top of a planar thick metallic layer. The solutions of the relevant dispersion equations were used to predict the excitation of multiple SPP waves and waveguide modes when the metallic layer is patterned as a two-dimensional (2D) surface-relief grating. The same structure was experimentally fabricated and optically characterized to validate the theoretical approach. Both the theoretical and experimental results show broadband coupling of incident light of either linear polarization state over a broad range of the angle of incidence. This structure has potential applications in planar optical concentrators.
机译:Floquet理论和转移矩阵方法用于研究在平面顶部包含有限厚度的一维光子晶体(1D PC)的结构中表面等离子体激元(SPP)波和波导模式的激发厚的金属层。当金属层被图案化为二维(2D)表面浮雕光栅时,使用相关色散方程的解来预测多个SPP波和波导模式的激发。实验上制造了相同的结构,并对其光学特性进行了验证,以验证理论方法。理论和实验结果均表明,线性偏振态的入射光在较宽的入射角范围内具有宽带耦合。这种结构在平面光学集中器中具有潜在的应用。

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