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Enhanced coupling efficiency between dielectric and hybrid plasmonic waveguides

机译:介电和混合等离子体激元波导之间的耦合效率提高

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摘要

The modal distributions and properties of dielectric and hybrid plasmonic (HP) waveguides are investigated systematically. Their coupling efficiency through a direct coupling scheme is estimated by numerical simulation and the results are compared with values predicted by the Fresnel formula. The influence of various factors on the coupling efficiency between dielectric and HP waveguides, including interface scattering, absorption caused by light coupling to the surface plasmon polariton mode, and the mismatch between the two waveguide modes, is analyzed theoretically. A tapered coupling structure with linearly varying height and width of the silicon layer is proposed, with which extremely high coupling efficiency (94.4%) and good broadband coupling performance (above 90%) are demonstrated.
机译:系统地研究了介电和混合等离子体(HP)波导的模态分布和特性。通过直接耦合方案,通过数值模拟估算了它们的耦合效率,并将结果与​​菲涅耳公式预测的值进行了比较。从理论上分析了各种因素对介电波导和高压波导之间耦合效率的影响,包括界面散射,光耦合至表面等离激元极化模式所引起的吸收以及两种波导模式之间的失配。提出了一种具有线性变化的硅层高度和宽度的锥形耦合结构,该结构具有极高的耦合效率(94.4%)和良好的宽带耦合性能(超过90%)。

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