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利用带有锁相环的脉冲注入半导体激光器进行任意信道选择的演示。

Demonstration of arbitrary channel selection utilizing a pulse-injected semiconductor laser with a phase-locked loop.

作者信息

Juan Yu-Shan, Lin Fan-Yi

机构信息

Institute of Photonics Technologies, Department of Electrical Engineering, National Tsing Hua University, Hsinchu, Taiwan.

出版信息

Opt Express. 2011 Jan 17;19(2):1057-64. doi: 10.1364/OE.19.001057.

Abstract

An arbitrary channel selection system based on a pulse-injected semiconductor laser with a phase-locked loop (PLL) is experimentally demonstrated and characterized. Through optical injection from a tunable laser, channels formed by the frequency components of a microwave frequency comb generated in the pulse-injected semiconductor laser are individually selected and enhanced. Selections of a primary channel at the fundamental frequency of 1.2 GHz and a secondary channel in a range from 10.8 to 18 GHz are shown, where the selection is done by adjusting the injection strength from the tunable laser. Suppression ratios of 44.5 and 25.9 dB between the selected primary and secondary channels to the averaged magnitude of the unwanted channels are obtained, respectively. To show the spectral quality of the pulse-injected laser, a single sideband (SSB) phase noise of -60 dBc/kHz at an offset frequency of 25 kHz is measured. Moreover, the conversion gain between the primary and secondary channels and the crosstalk between the selected channels to the adjacent unwanted channels are also investigated. Without the need of expensive external modulators, arbitrary channel selection is realized in the proposed system where the channel spacing and selection can be continuously adjusted through tuning the controllable laser parameters.

摘要

实验展示并表征了一种基于带有锁相环(PLL)的脉冲注入半导体激光器的任意信道选择系统。通过来自可调谐激光器的光注入,由脉冲注入半导体激光器中产生的微波频率梳的频率分量形成的信道被单独选择并增强。展示了对1.2 GHz基频的主信道和10.8至18 GHz范围内的次信道的选择,其中选择是通过调整可调谐激光器的注入强度来完成的。所选主信道和次信道与不需要信道的平均幅度之间的抑制比分别为44.5 dB和25.9 dB。为了展示脉冲注入激光器的光谱质量,在25 kHz的偏移频率下测量了-60 dBc/kHz的单边带(SSB)相位噪声。此外,还研究了主信道和次信道之间的转换增益以及所选信道与相邻不需要信道之间的串扰。在所提出的系统中,无需昂贵的外部调制器即可实现任意信道选择,其中信道间距和选择可以通过调整可控激光参数来连续调节。

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