Title :
Impact of saturable absorption on performance of optical clock recovery using a mode-locked multisection semiconductor laser
Author :
Bao, Hongchun ; Wen, Yang Jing ; Liu, Hai-Feng
Author_Institution :
Dept. of Electr. & Electron. Eng., Univ. of Melbourne, Parkville, Vic., Australia
Abstract :
This paper investigates the impact of saturable absorption (SA) on the performance of optical clock recovery using a mode-locked multisection laser diode. Optical clock at 40 GHz is recovered from the multisection laser with SA section operated under a range of bias conditions. The dependence of extinction ratio and timing jitter of the recovered clock on required optical injection power, data rate detuning, and mark ratio is also evaluated under these operation conditions. The experimental results show that strong SA effect in laser cavity improves extinction ratio and suppresses timing jitter of the recovered clock, while weak or no SA effect in laser cavity offers clock recovery with larger date rate detuning range defined by timing jitter and less dependence on the variation of data mark ratio for extremely low mark ratio.
Keywords :
laser cavity resonators; laser mode locking; optical saturable absorption; semiconductor lasers; synchronisation; timing jitter; 40 GHz; bias conditions; data rate detuning; extinction ratio; laser cavity; laser diode; mark ratio; mode-locked semiconductor laser; multisection semiconductor laser; optical clock recovery; optical injection power; saturable absorption; timing jitter; Absorption; Clocks; Fiber nonlinear optics; High speed optical techniques; Laser mode locking; Nonlinear optics; Optical crosstalk; Optical signal processing; Semiconductor lasers; Timing jitter; Data rate detuning; SA; extinction ratio; mark ratio; multisection semiconductor laser; optical clock recovery; saturable absorption; timing jitter;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2004.833237