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基于偏振调制器和巴特沃斯带阻滤波器的超平坦光学频率梳产生

Ultra-flat optical frequency comb generation based on a polarization modulator and a Butterworth band-stop filter.

作者信息

Guo Yifeng, Liu Yu, Li Dan, Wu Shibao

出版信息

Appl Opt. 2021 Jul 1;60(19):5540-5546. doi: 10.1364/AO.424836.

Abstract

A new, to the best of our knowledge, scheme for the generation of ultra-flat optical frequency combs (OFCs) is proposed, which mainly uses a polarization modulator (PolM) and a first-order Butterworth band-stop filter. The PolM is driven by a digital periodic square-wave signal, and the output of the PolM is an uneven OFC. The function of the Butterworth band-stop filter is to obtain flat and stable OFCs by changing its bandwidth. The comb spacing of the OFCs can be adjusted by changing the period of the square-wave signal. The theoretical model for the scheme is also established. The simulation results show that the generator constructed according to the proposed scheme can produce 64, 128, and 256 comb lines with 200 MHz comb spacing and with spectral flatness lower than 0.3 dB. The comb spacing can be further increased by using the square-wave signal at GHz rates, and the generated OFCs exhibit good frequency tunability.

摘要

据我们所知,本文提出了一种用于产生超平坦光学频率梳(OFC)的新方案,该方案主要使用一个偏振调制器(PolM)和一个一阶巴特沃斯带阻滤波器。PolM由数字周期性方波信号驱动,其输出是一个不均匀的OFC。巴特沃斯带阻滤波器的作用是通过改变其带宽来获得平坦且稳定的OFC。通过改变方波信号的周期,可以调整OFC的梳齿间距。还建立了该方案的理论模型。仿真结果表明,根据所提出的方案构建的发生器能够产生梳齿间距为200 MHz、梳齿线数为64、128和256且光谱平坦度低于0.3 dB的OFC。通过使用GHz速率的方波信号,梳齿间距可以进一步增加,并且所产生的OFC表现出良好的频率可调性。

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