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用于大规模光子学逆向设计的高性能混合时域/频域拓扑优化

High-performance hybrid time/frequency-domain topology optimization for large-scale photonics inverse design.

作者信息

Hammond Alec M, Oskooi Ardavan, Chen Mo, Lin Zin, Johnson Steven G, Ralph Stephen E

出版信息

Opt Express. 2022 Jan 31;30(3):4467-4491. doi: 10.1364/OE.442074.

Abstract

We present a photonics topology optimization (TO) package capable of addressing a wide range of practical photonics design problems, incorporating robustness and manufacturing constraints, which can scale to large devices and massive parallelism. We employ a hybrid algorithm that builds on a mature time-domain (FDTD) package Meep to simultaneously solve multiple frequency-domain TO problems over a broad bandwidth. This time/frequency-domain approach is enhanced by new filter-design sources for the gradient calculation and new material-interpolation methods for optimizing dispersive media, as well as by multiple forms of computational parallelism. The package is available as free/open-source software with extensive tutorials and multi-platform support.

摘要

我们展示了一个光子学拓扑优化(TO)软件包,它能够解决广泛的实际光子学设计问题,纳入了稳健性和制造约束条件,并且可以扩展到大型器件和大规模并行计算。我们采用了一种混合算法,该算法基于成熟的时域(FDTD)软件包Meep构建,以在宽频带上同时解决多个频域TO问题。这种时域/频域方法通过用于梯度计算的新滤波器设计源和用于优化色散介质的新材料插值方法,以及多种形式的计算并行性得到了增强。该软件包作为免费/开源软件提供,带有大量教程和多平台支持。

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