基于两步混合二元模拟优化的双波段波长解复用功分器逆向设计

Aolong Sun, Sizhe Xing, An Yan, Xuyu Deng, Zhongya Li, Guoqiang Li, Penghao Luo, Nan Chi, Junwen Zhang
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引用次数: 0

摘要

我们展示了一种名为波长解复用功率分配器(WDPS)的多功能硅光子器件的逆向设计,该器件可同时实现双波段(1310/1550 nm)解复用和 1:1 功率分配。我们提出了一种新型两步混合二进制模拟优化(TH-BAO)方法,该方法结合了两种不同的优化技术:用于二进制像素状态优化的直接二进制搜索(DBS)和用于模拟像素位置优化的粒子群优化(PSO)。与传统的 DBS 方法相比,TH-BAO 方法的优化性能相当,总模拟运行次数减少了 29.2%。反向设计的 WDPS 在 1310 nm 和 1550 nm 波段的插入损耗分别为 0.76 dB 和 1.19 dB,信道串扰分别为 -17.96 dB 和 -11.20 dB。此外,我们器件的双频功能可有效支持下一代无源光网络的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inverse design of a dual-band wavelength demultiplexing power splitter based on two-step hybrid binary-analog optimization
We demonstrated the inverse design of a multifunctional silicon photonic device named wavelength demultiplexing power splitter (WDPS) which can realize dual-band (1310/1550 nm) demultiplexing and 1:1 power splitting simultaneously. We proposed a novel two-step hybrid binary-analog optimization (TH-BAO) method that combines two distinct optimization techniques: direct binary search (DBS) for binary pixel-state optimization and particle swarm optimization (PSO) for analog pixel-position optimization. Compared with the traditional DBS method, the TH-BAO method achieves comparable optimization performance with a reduction of the total simulation runs by 29.2%. The inverse-designed WDPS achieves insertion losses of 0.76 dB and 1.19 dB, as well as channel crosstalks of -17.96 dB and -11.20 dB at 1310 nm and 1550 nm, respectively. Furthermore, the dual-band functionality of our device can efficiently support the development of next-generation passive optical networks.
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