Optical sideband injection locking using waveguide based external cavity semiconductor lasers for narrow-line, tunable microwave generation

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Abstract

The generation by optical injection locking of spectrally unadulterated microwave signals using waveguide based external cavity semiconductor lasers (WECSL) is demonstrated. A tunable frequency of 2-11 GHz, limited by the modulator's bandwidth and the photodetector (PD), was created as proof-of-experiment by the injection locking of the two WESCLs. A single sideband (SSB) phase noise of -75 dBc/Hz from the generated carrier at 10 kHz offset and a phase noise variance at an optimum injection ratio region was 0.03 rad2, corresponding to 1.7°, were observed. The main feature of this approach is the consolidation of the upsides of microwave generation at low phase noise with a broad tuning range and the capacity of hybrid photonic integration. In addition, the injection locking characteristics were used to determine the Q factor of the complicated optical cavities with unknown inner losses.

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APA

Khan, M. R. H., & Hoque, M. A. (2019). Optical sideband injection locking using waveguide based external cavity semiconductor lasers for narrow-line, tunable microwave generation. Photonics, 6(3). https://doi.org/10.3390/photonics6030081

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