14 May 2022 Tunable all-optical microwave signal generation based on period-one dynamics of an external optically injected distributed-feedback laser diode and feedback oscillation
Qiang Yu, Yang Jiang, Xiangping Chen, Jing Xu, Jing Tian, Jiahui Li, Xiaohong Lan, Na Chen, Yuejiao Zi
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Abstract

A tunable all-optical microwave generator based on period-one (P1) dynamics of an external optically injected distributed-feedback laser diode (DFB-LD) is proposed and demonstrated. A DFB-LD implements the functions of light source, microwave frequency selection, and optical–optical modulation. To overcome the frequency drift in P1 oscillation process, a set of reference frequencies from a fiber ring laser (FRL) is introduced. Once the P1 oscillation signal and the modes of FRL are coupled, the whole system is closed and a stable frequency determined by P1 oscillation can be established. In the experimental verification, tunable photonic microwave signals with frequencies from 6.42 to 21.36 GHz are obtained. The measured single-sideband phase noise is −83  dBc  /  Hz at 10-kHz offset, which is operation frequency independent.

© 2022 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2022/$28.00 © 2022 SPIE
Qiang Yu, Yang Jiang, Xiangping Chen, Jing Xu, Jing Tian, Jiahui Li, Xiaohong Lan, Na Chen, and Yuejiao Zi "Tunable all-optical microwave signal generation based on period-one dynamics of an external optically injected distributed-feedback laser diode and feedback oscillation," Optical Engineering 61(5), 056103 (14 May 2022). https://doi.org/10.1117/1.OE.61.5.056103
Received: 4 February 2022; Accepted: 8 April 2022; Published: 14 May 2022
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KEYWORDS
Microwave radiation

Signal generators

Modulation

Microwave photonics

Photonic microstructures

Polarization

Semiconductor lasers

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