We compare the timing jitter of a mode-locked InAs/InP quantum dash (QD) coherent comb laser (CCL) with and without an external cavity self-injection feedback locking (SIFL) system. The jitter is determined through a measurement of the first harmonic of the RF power spectrum of the laser output detected using a fast photodiode. A significant reduction in timing jitter is observed in the laser with the external cavity SIFL. A pulse to pulse root-mean-square time jitter of 1.56 fs is achieved for the laser with the external cavity SIFL. This low timing jitter is a promising light source for the next generation high-speed coherent networking systems and all-optical signal processing. We demonstrate results of a double polarization 16-QAM data format transmission system at a symbol rate of 25 GBd using more than 30 individual channels of the QD CCL. An error vector magnitude of 5.8% and bit error rate of 3.0 x 10(-9) were obtained. And, 6.0 Tb/s (16QAM 30 x 25 Gbd PDM) coherent transmission is achieved. PU - IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC PI - PISCATAWAY PA - 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
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Mao, Y., Liu, J., Lu, Z., Song, C., & Poole, P. J. (2019). Ultra-Low Timing Jitter of Quantum Dash Semiconductor Comb Lasers With Self-Injection Feedback Locking. IEEE Journal of Selected Topics in Quantum Electronics, 25(6), 1–7. https://doi.org/10.1109/jstqe.2019.2916840