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Rigorous Coupled Wave Analysis for Plasmonic Nanoparticles

机译:等离子体纳米粒子的严格耦合波分析

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摘要

Electromagnetic simulation packages for nanoparticles have become of interest for science and engineering community because of interesting properties of nanomaterials, such as, plasmonics and localized field enhancement. There are several approaches to calculate electromagnetic wave responses including time domain and frequency domain; each approach does have its own pros and cons. In this paper, we discuss basic principle of Rigorous coupled wave analysis (RCWA) and some key issues of 2D Rigorous Coupled Wave Analysis (RCWA) for nanoparticle simulation, such as, the computing demands (long computation time and memory consumption) and staircase approximation. We also suggest some feasible approaches to get around the issues and speed up the calculation, such as, employing Li Feng Li's RCWA algorithm for circular and elliptical rods, making use of the symmetry of spherical shape particles to reduce redundancies in computation and building up an Eigenvector/Eigenvalue database of difference radii of disks, so that these disks can be stacked together to form various sizes of nanospheres.
机译:由于纳米材料的有趣性质,例如纳米材料,如纳米材料,如血管性和局部田间增强,用于纳米粒子的电磁模拟包装已成为科学和工程界的感兴趣。有几种方法来计算包括时域和频域的电磁波响应;每种方法都有自己的利弊。在本文中,我们讨论了严格耦合波分析(RCWA)的基本原理,以及用于纳米粒子模拟的2D严格耦合波分析(RCWA)的一些关键问题,例如计算需求(长计算时间和内存消耗)和阶梯近似。我们还表明了一些可行的方法来解决问题并加快计算,例如,采用李凤李的圆形和椭圆杆的RCWA算法,利用球形颗粒的对称性来减少计算中的冗余和建立冗余磁盘差异半径的特征向量/特征值数据库,使这些盘可以堆叠在一起以形成各种尺寸的纳米球。

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