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首页> 外文期刊>Procedia Computer Science >Numerical Optimization Technique for Optimal Design of the n Grooves Surface Plasmon Grating Coupler
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Numerical Optimization Technique for Optimal Design of the n Grooves Surface Plasmon Grating Coupler

机译: n 沟槽表面等离激元光栅耦合器优化设计的数值优化技术

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摘要

A gradient based numerical optimization technique to obtain an optimal design of the geometry of a metal grating and parameters of an incident Gaussian beam (GB) to excite surface plasmons is introduced. The numerical gradient is obtained by exploiting the available Finite Element Method discretization data, and by direct differentiation of the GB parameters, such as its angle of incidence and the position of the center. There are two approaches considered. One uses a fixed mesh via discrete geometry update steps for 4 grooves with a 14 dimensional gradient. Another approach uses a general n grooves grating with independent user defined dimensions of the rectangular grooves. With just doubling the number of grooves, the 8 grooves grating with a 26 dimensional gradient shows a much improved energy conversion rate (up to 77%) demonstrating considerable practical value of the methodology.
机译:介绍了一种基于梯度的数值优化技术,以获得金属光栅的几何形状和入射高斯光束(GB)激发表面等离子体激元参数的最佳设计。通过利用可用的有限元方法离散化数据,以及通过直接区分GB参数(例如入射角和中心位置)来获得数值梯度。考虑了两种方法。一个通过离散几何更新步骤使用固定网格,用于4个具有14维梯度的凹槽。另一种方法使用具有独立的用户定义的矩形凹槽尺寸的普通n凹槽光栅。仅将凹槽数量加倍,具有26维梯度的8个凹槽光栅显示出大大提高的能量转换率(高达77%),证明了该方法的可观实用价值。

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