Abstract
We propose a novel self-homodyne optical-electrical-optical clock recovery technique for binary phase-shift keying (BPSK) signals using commercial optical and electrical components. We present the principle of operation as well as a proof-of-concept experiment for a 10.7 Gb/s BPSK signal clock recovery transmitted over a dispersion-compensated link of 20 km of single-mode fiber. Suppression of pattern-related frequency noise at the output of the recovered clock is shown. The timing jitter of the recovered clock at 10.7 GHz was measured to be approximately 450 fs (integration range: 100 Hz-10 MHz).
Cite
CITATION STYLE
Sooudi, E., Ellis, A. D., & Manning, R. J. (2017). Self-starting optical–electrical–optical homodyne clock recovery for phase-modulated signals. Optics Letters, 42(17), 3486. https://doi.org/10.1364/ol.42.003486
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