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Wideband sensitivity analysis of plasmonic structures

机译:等离子体结构的宽带灵敏度分析

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We propose an adjoint variable method (AVM) for efficient wideband sensitivity analysis of the dispersive plasmonic structures. Transmission Line Modeling (TLM) is exploited for calculation of the structure sensitivities. The theory is developed for general dispersive materials modeled by Drude or Lorentz model. Utilizing the dispersive AVM, sensitivities are calculated with respect to all the designable parameters regardless of their number using at most one extra simulation. This is significantly more efficient than the regular finite difference approaches whose computational overhead scales linearly with the number of design parameters. A Z-domain formulation is utilized to allow for the extension of the theory to a general material model. The theory has been successfully applied to a structure with teeth-shaped plasmonic resonator. The design variables are the shape parameters (widths and thicknesses) of these teeth. The results are compared to the accurate yet expensive finite difference approach and good agreement is achieved.
机译:我们提出了一种辅助变量方法(AVM),用于高效地分析色散等离子体激元结构的宽带灵敏度。传输线建模(TLM)用于计算结构灵敏度。该理论是针对由Drude或Lorentz模型建模的常规分散材料开发的。利用色散AVM,最多可使用一个额外的仿真来计算所有可设计参数的灵敏度,而不考虑其数量。这比常规的有限差分方法效率更高,后者的计算开销与设计参数的数量成线性比例关系。 Z域公式可用于将理论扩展到通用材料模型。该理论已成功地应用于具有齿形等离子体共振器的结构。设计变量是这些齿的形状参数(宽度和厚度)。将结果与准确而昂贵的有限差分方法进行比较,并取得了良好的一致性。

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