Title :
40 Gbit/s pulsed RZ-BPSK transmission with a 40 GHz self-pulsated distributed feedback laser diode Mach??Zehnder intensity modulator link
Author :
Yu-Chieh Chi ; Huai-Yung Wang ; Chih-Hsien Cheng ; Gong-Ru Lin
Author_Institution :
Dept. of Electr. Eng., Nat. Taiwan Univ., Taipei, Taiwan
Abstract :
A self-starting pulsed encoding of a Mach- Zehnder intensity modulator (MZM) is demonstrated to generate a 40 Gbit/s return-to-zero binary phase-shifted-keying (RZ-BPSK) data stream by using the optoelectronic feedback loop. By driving the MZM with an optoelectronic oscillator, both the electrical clock and the optical pulse train at 40 GHz can be extracted to deliver and trigger the synthesizer-free 40 Gbit/s RZ-BPSK data. The pulsed RZ carrier with a pulsewidth of 10.5 ps provides a jitter as low as 150 fs and an extinction ratio as high as 7.8 dB, which is particularly suitable for the RZ-BPSK transmission at 40 Gbit/s. The back-to-back transmitted synthesizerfree 40 Gbit/s RZ-BPSK data with a pattern length of 223 - 1 reveals a receiving power sensitivity of -16.3 dBm at the requested bit error rate of 10-9 by setting the DC bias of the BPSK demodulator at 3.76 V. After 25 km single-mode-fiber transmission, the RZ-BPSK data indicates a power penalty of 4 dB when compared with the back-to-back case.
Keywords :
Mach number; error statistics; feedback oscillators; millimetre wave oscillators; modulation coding; optical fibre networks; optical modulation; optoelectronic devices; phase shift keying; semiconductor lasers; trigger circuits; BPSK demodulator; DC bias; MZM; Mach-Zehnder intensity modulator link; RZ-BPSK data; bit rate 40 Gbit/s; electrical clock; extinction ratio; frequency 40 GHz; jitter; optical pulse train; optoelectronic feedback loop; optoelectronic oscillator; pattern length; pulsed RZ-BPSK transmission; receiving power sensitivity; return-to-zero binary phase-shifted-keying data stream; self-pulsated distributed feedback laser diode; self-starting pulsed encoding; single-mode-fiber transmission; voltage 3.76 V; Clocks; Delays; Optical amplifiers; Optical fibers; Optical modulation; Timing jitter; 40 GHz; DFBLD-MZM; Optoelectronicfeedback loop; RZ-BPSK; Self-started pulsation;
Journal_Title :
Optical Communications and Networking, IEEE/OSA Journal of
DOI :
10.1109/JOCN.2014.6850202