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Optimization of Plasmonic Nano-Antennas

机译:等离子体纳米天线的优化

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The interaction of light with plasmonic nano-antennas is investigated. First, an extensive parametric study is performed on the material and geometrical effects on dipole and bow-tie nano-antennas. The transmission efficiency is studied for various parameters including length, thickness, width, and composition of the antenna as well as the wavelength of incident light. The modeling and simulation of these structures is done using 3-D finite element method based full-wave solutions of Maxwell's equations. Next, a modeling-based automated design optimization framework is developed to optimize nano-antennas. The electromagnetic model is integrated with optimization solvers such as gradient-based optimization tools and genetic algorithms.
机译:研究了光与等离子体纳米天线的相互作用。首先,对偶极子和领结式纳米天线的材料和几何效应进行了广泛的参数研究。研究了各种参数的传输效率,包括天线的长度,厚度,宽度和组成以及入射光的波长。这些结构的建模和仿真是使用基于Maxwell方程的全波解的3-D有限元方法完成的。接下来,开发了基于建模的自动化设计优化框架来优化纳米天线。电磁模型与优化求解器集成在一起,例如基于梯度的优化工具和遗传算法。

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