28 September 2019 Wideband tunable single passband microwave photonic filter based on optical injection
Yuandong Li, Huatao Zhu, Jilin Zheng, Hua Zhou, Peng Xiang, Tao Pu, Xin Zhang, Jin Li, Feng Zhou
Author Affiliations +
Abstract

Optical injection is an effective way to generate a tuned microwave photonic filter (MPF). However, the tuning range of the optical injection-based MPF is limited by the nonlinear dynamics and the nonideal roll-off optical filter. To enlarge the tuning range of the MPF, a polarization modulated optical signal injection distributed feedback semiconductor laser is employed. The method is free from the nonlinear dynamics and the nonideal roll-off optical filter. The experimental result shows that the proposed MPF can be tuned from 0 to 40 GHz by directly tuning the center wavelength of the optical carrier. The tuning range can be increased if polarization modulator and photodetector with larger bandwidth are exploited. To the best of our knowledge, this is the largest frequency tuning range of optical injection-based MPF.

© 2019 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2019/$28.00 © 2019 SPIE
Yuandong Li, Huatao Zhu, Jilin Zheng, Hua Zhou, Peng Xiang, Tao Pu, Xin Zhang, Jin Li, and Feng Zhou "Wideband tunable single passband microwave photonic filter based on optical injection," Optical Engineering 58(9), 096112 (28 September 2019). https://doi.org/10.1117/1.OE.58.9.096112
Received: 9 May 2019; Accepted: 12 September 2019; Published: 28 September 2019
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KEYWORDS
Polarization

Modulation

Modes of laser operation

Laser optics

Nonlinear dynamics

Microwave photonic filters

Polarizers

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