Title :
Retiming and reshaping function of all-optical clock extraction at 160 Gb/s in monolithic mode-locked laser diode
Author :
Arahira, Shin ; Ogawa, Yoh
Author_Institution :
Corporate Res. & Dev. Center, Oki Electr. Ind. Co., Ltd., Tokyo, Japan
fDate :
7/1/2005 12:00:00 AM
Abstract :
Retiming and reshaping behaviors in an all-optical clock extraction operation at 160 Gb/s using a monolithic 160-GHz mode-locked laser diode was investigated in detail. The investigation of the basic clock extraction performance revealed that the clock extraction was stable against the input of data signals with a long zero sequence and with a poor extinction ratio. The clock extraction performance when the input data had random intensity and timing fluctuations was also discussed. We revealed that the generated clock pulse train absorbed well the intensity and timing fluctuations of the input data. Stable clock extraction remained even when the input data had 25% of the peak-intensity fluctuations. A timing jitter reduction from 0.85 to 0.32 ps was also achieved. The detailed investigation in the frequency-domain analysis of the jitter spectra revealed that the timing jitter reduction originated from the short-term stability of the slave 160-GHz mode-locked laser diode.
Keywords :
fluctuations; integrated optoelectronics; laser mode locking; laser stability; monolithic integrated circuits; optical fibre communication; random processes; semiconductor lasers; synchronisation; time division multiplexing; timing jitter; 0.32 to 0.85 ps; 160 GHz; 160 Gbit/s; all-optical clock extraction; clock pulse train; extinction ratio; frequency-domain analysis; jitter spectra; mode-locked laser diode; monolithic laser diode; optical communication systems; optical-time-division-multiplexing; peak-intensity fluctuations; random intensity; reshaping function; retiming function; short-term stability; stable clock extraction; timing fluctuations; timing jitter reduction; Clocks; Data mining; Diode lasers; Extinction ratio; Fluctuations; Frequency domain analysis; Laser stability; Pulse generation; Stability analysis; Timing jitter; 3R regeneration; clock extraction; mode-locked laser diode; optical communication systems; optical-time-division-multiplexing (OTDM);
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2005.848937