Frequency-modulated Microwave Signal Generation by Dual-Wavelength Optically Injected Semiconductor Laser

Xiaoyue Yu, Fangzheng Zhang, Guanqun Sun, Boyang Wu, S. Pan, Yuewen Zhou
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引用次数: 0

Abstract

A dual-wavelength optically injected semiconductor laser system working with period-one dynamic is proposed for generation of frequency-modulated microwave signals. In the proposed system, two master lasers with different frequencies are combined and injected into a slave laser simultaneously. Thanks to the period-one oscillations, frequency-modulated microwave signals can be generated without using extra modulates or signal generates. Numerical simulations based on a set of modified nonlinear rate equations are conducted to investigate the performance of the proposed system, and a proof-of-concept experiment is carried out, in which a frequency-modulated microwave signal having a bandwidth of 5.3 GHz (13.2–18.5 GHz) is successfully generated.
双波长光注入半导体激光器产生调频微波信号
提出了一种一周期动态双波长光注入半导体激光器系统,用于产生调频微波信号。在该系统中,两个不同频率的主激光器被组合并同时注入到一个从激光器中。由于周期一振荡,频率调制的微波信号可以不使用额外的调制或信号发生器产生。基于一组改进的非线性速率方程进行了数值模拟,研究了该系统的性能,并进行了概念验证实验,成功地产生了带宽为5.3 GHz (13.2-18.5 GHz)的调频微波信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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