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A Slot-Based Surface Plasmon-Polariton Waveguide With Long-Range Propagation and Superconfinement

机译:具有长距离传播和超约束的基于缝隙的表面等离子-极化波导管

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摘要

A full-vector spectral element method (SEM) is applied to model and simulate surface plasmon-polariton (SPP) waveguides. Gauss-Lobatto-Legendre (GLL) polynomials are used to construct higher-order basis functions to achieve spectral accuracy. A discretization scheme featuring a nonuniform mesh with extra elements near the metal-dielectric interface is proposed to capture the waveguide configuration and dramatical mode field variations of the SPP waveguide. The studies on the accuracy and mode field distribution show that SEM is highly efficient and accurate. Using SEM simulation, a slot-based SPP waveguide operating at telecom wavelengths is proposed. Numerical results show that the proposed structure can simultaneously achieve millimeter-scale propagation distance (L-p similar to 2.6 mm) and below-diffraction-limited effective mode area (A(eff)/A(0) similar to 0.3). Parametric plots illustrate a significant improvement when compared to conventional SPP waveguides. Investigation of the mode width and crosstalk also demonstrates the excellent 3-D integration performance of the structure. The proposed slot-based SPP waveguide thus can become a potential candidate for highly integrated photonic circuits.
机译:应用了全矢量光谱元素方法(SEM)对表面等离子体激元(SPP)波导进行建模和仿真。 Gauss-Lobatto-Legendre(GLL)多项式用于构造高阶基函数以实现光谱精度。提出了一种离散化方案,其特征是在金属-电介质界面附近具有带有不均匀元素的不均匀网格,以捕获SPP波导的波导配置和剧烈的模场变化。对精度和模场分布的研究表明,SEM是高效且准确的。利用SEM仿真,提出了在电信波长下工作的基于缝隙的SPP波导。数值结果表明,所提出的结构可以同时实现毫米级的传播距离(L-p类似于2.6 mm)和低于衍射极限的有效模式面积(A(eff)/ A(0)类似于0.3)。与传统的SPP波导相比,参数图显示出显着的改进。对模式宽度和串扰的研究还证明了该结构出色的3-D集成性能。所提出的基于缝隙的SPP波导因此可以成为高度集成的光子电路的潜在候选者。

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