首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Topology optimization of photonics devices: fluctuation-trend analysis concept; random initial conditions with Gaussian and Durden-Vesecky power density bandlimited spectra
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Topology optimization of photonics devices: fluctuation-trend analysis concept; random initial conditions with Gaussian and Durden-Vesecky power density bandlimited spectra

机译:光子学装置的拓扑优化:波动趋势分析概念; 高斯和Durden-Vesecky功率密度带状光谱随机初始条件

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摘要

We present a topology optimization method for a 1D dielectric metasurface, based on a new concept: fluctuation and trend analysis for initial random conditions. The key point of the proposed optimization method is that the procedure initially generates a couple of device distributions termed fluctuation/mother and trend/father, with specific spectra that efficiently sample not the local minimum of the objective function but basins of optimal solutions in the design space. Studying a 1D dielectric metagrating deflecting a normal polarized incident wave onto a range of angles, we show that a suitable choice of a specific power density spectrum for this initial couple highly increases the probability of reaching a basin of high-performance devices. We guess initial geometries holding the physical properties of the desired final device, allowing accurate targeting of these high-performance device basins in the design space. To include desired physical properties in the initial geometry model, we introduce a formalism allowing generation of a random process with a particular power density or correlation function. By means of a suitable definition of the trend function, we identify an ultimate power density bandlimited spectrum for the fluctuation functions allowing a very high probability and leading to a rapid descent to favorable basins of optimal solutions, consequently reaching high-performance final structure in the design space. (C) 2020 Optical Society of America
机译:基于新概念:初始随机条件的波动和趋势分析,我们为1D介电元曲面提供了一种拓扑优化方法。所提出的优化方法的关键点是该过程最初产生了一些被称为波动/母亲和趋势/父亲的设备分布,具体的光谱有效地抽样而不是目标函数的局部最小值,而是在设计中最佳解决方案的盆地空间。研究1D介电均代偏转将正常偏振的入射波偏转到一系列角度上,我们表明该初始耦合的特定功率密度光谱的合适选择高度增加了到达高性能设备盆地的概率。我们猜测初始几何形状保持所需的最终装置的物理性质,允许精确地定位这些高性能设备盆地在设计空间中。为了在初始几何模型中包括所需的物理性质,我们引入了一种形式主义,允许产生具有特定功率密度或相关函数的随机过程。借助于趋势函数的合适定义,我们识别用于波动函数的最终功率密度带限频谱,允许非常高的概率并导致快速下降到最佳解决方案的有利盆地,因此达到了高性能的最终结构设计空间。 (c)2020美国光学学会

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