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具有灵活色散的集成光子波导的高效设计

Efficient Design for Integrated Photonic Waveguides with Agile Dispersion.

作者信息

Wang Zhaonian, Du Jiangbing, Shen Weihong, Liu Jiacheng, He Zuyuan

机构信息

State Key Laboratory of Advanced Optical Communication Systems and Networks, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Sensors (Basel). 2021 Oct 7;21(19):6651. doi: 10.3390/s21196651.

Abstract

Chromatic dispersion engineering of photonic waveguide is of great importance for Photonic Integrated Circuit in broad applications, including on-chip CD compensation, supercontinuum generation, Kerr-comb generation, micro resonator and mode-locked laser. Linear propagation behavior and nonlinear effects of the light wave can be manipulated by engineering CD, in order to manipulate the temporal shape and frequency spectrum. Therefore, agile shapes of dispersion profiles, including typically wideband flat dispersion, are highly desired among various applications. In this study, we demonstrate a novel method for agile dispersion engineering of integrated photonic waveguide. Based on a horizontal double-slot structure, we obtained agile dispersion shapes, including broadband low dispersion, constant dispersion and slope-maintained linear dispersion. The proposed inverse design method is objectively-motivated and automation-supported. Dispersion in the range of 0-1.5 ps/(nm·km) for 861-nm bandwidth has been achieved, which shows superior performance for broadband low dispersion. Numerical simulation of the Kerr frequency comb was carried out utilizing the obtained dispersion shapes and a comb spectrum for 1068-nm bandwidth with a 20-dB power variation was generated. Significant potential for integrated photonic design automation can be expected.

摘要

光子波导的色散工程对于广泛应用中的光子集成电路至关重要,包括片上色散补偿、超连续谱产生、克尔频率梳产生、微谐振器和锁模激光器。通过色散工程可以操纵光波的线性传播行为和非线性效应,从而操纵时间形状和频谱。因此,在各种应用中,人们非常希望获得灵活的色散分布形状,包括典型的宽带平坦色散。在本研究中,我们展示了一种用于集成光子波导灵活色散工程的新方法。基于水平双槽结构,我们获得了灵活的色散形状,包括宽带低色散、恒定色散和斜率保持线性色散。所提出的逆向设计方法具有客观依据且得到自动化支持。对于861纳米带宽,已实现0至1.5皮秒/(纳米·千米)范围内的色散,这在宽带低色散方面表现出卓越性能。利用所获得的色散形状进行了克尔频率梳的数值模拟,并生成了1068纳米带宽、功率变化20分贝的梳状频谱。集成光子设计自动化具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d87/8512407/61bafad7d91b/sensors-21-06651-g001a.jpg

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