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首页> 外文期刊>Physics Letters, A >Comb-like optical transmission spectra generated from one-dimensional two-segment-connected two-material waveguide networks optimized by genetic algorithm
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Comb-like optical transmission spectra generated from one-dimensional two-segment-connected two-material waveguide networks optimized by genetic algorithm

机译:由遗传算法优化的一维两段连接两材料波导网络产生的梳状光传输光谱

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摘要

In this Letter, a one-dimensional (1D) two-segment-connected two-material waveguide network(TSCTMWN) is designed to produce comb-like frequency passbands, where each waveguide segment is composed of normal and anomalous dispersion materials and the length ratio of sub-waveguide segments is optimized by genetic algorithm (GA). It is found that 66 comb-like frequency passbands are created in the second frequency unit, maximal relative width difference of which is less than 2 × 10~(-5). It may be useful for the designing of dense wavelength division multiplexings (DWDMs) and multi-channel filters, etc., and provide new applications for GA.
机译:在这封信中,设计了一维(1D)两段连接的两材料波导网络(TSCTMWN)以产生梳状频率通带,其中每个波导段均由正常和反常色散材料以及长度比组成通过遗传算法(GA)优化子波导段的数量。发现在第二频率单元中产生了66个梳状频率通带,其最大相对宽度差小于2×10〜(-5)。它对于设计密集波分复用(DWDM)和多通道滤波器等可能很有用,并为GA提供了新的应用。

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