MAS-MBPE在通道等离子激元极化分析中的应用

K. Tavzarashvili, G. Ghvedashvili, D. Karkashadze, G. Saparishvili
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引用次数: 3

摘要

将辅助源(MAS)方法与基于模型的参数估计(MBPE)技术相结合,应用于等离子体纳米结构的数值模拟。MAS是一种在频域计算电磁场的数值技术。自适应MBPE算法基于柯西公式,在频域内进行窄带数据向宽带数据的外推或内插。数据可以在指定的频率范围内计算或测量。对于计算数据,从Maxwell求解器中计算函数的采样值和一些低阶导数,然后用于重建函数。MBPE属于辅助技术,可以添加到任何现场求解器中。本文对通道等离子体极化子(CPP)进行了分析,以证明MAS-MBPE的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MAS-MBPE application for analysis of channel plasmon polaritons
A Method of Auxiliary Sources (MAS) combined with Model-Based Parameter Estimation (MBPE) technique is applied to numerical simulations of plasmonic nano-structures. The MAS is a numerical technique for the calculation of electromagnetic fields in the frequency domain. The adaptive MBPE algorithm is based on Cauchy's formula and operates in the frequency domain to extrapolate or interpolate from a narrowband set of data to a broadband set of data. The data can be either computed or measured over a specified frequency range. For computed data the sampled values of the function and a few low order derivatives are calculated from a Maxwell solver and are then used to reconstruct the function. MBPE belongs to the class of auxiliary techniques and can be added to any field solver. In this paper a Channel Plasmon-Polariton (CPP) is analyzed to demonstrate the efficiency of MAS-MBPE.
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