Extraction of lorentz model parameters for dielectrics and their application in nanoplasmonics

K. A. Shahriar, Ikramul Hasan Sohel, Md Mahamudun Arif Joy, R. H. Sagor, M. G. Saber
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引用次数: 3

Abstract

The Lorentz model parameters for alumina, aluminum arsenide, zinc oxide, potassium bromide, graphene and gallium arsenide are optimized using a nonlinear optimization algorithm based on the Hooke and Jeeves method. The complex relative permittivity of each of the mentioned materials is calculated over a long wavelength range using the optimized parameters. The obtained permittivity curves exhibit very good match with those obtained from the experimental results. The symmetric SPP mode propagation through MDM waveguides containing alumina and aluminum arsenide as dielectric layers sandwiched between layers of silver has been investigated using their optimized modeling parameters.
介质洛伦兹模型参数的提取及其在纳米等离子体中的应用
采用基于Hooke和Jeeves方法的非线性优化算法对氧化铝、砷化铝、氧化锌、溴化钾、石墨烯和砷化镓的Lorentz模型参数进行了优化。利用优化后的参数计算了上述每种材料在长波长范围内的复相对介电常数。所得的介电常数曲线与实验结果吻合得很好。利用优化后的模型参数,研究了以氧化铝和砷化铝为介质层夹在银层之间的MDM波导中的对称SPP模式传播。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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