Title :
Optimized Quantum–Well Semiconductor Optical Amplifier for RZ-DPSK Signal Regeneration
Author :
Huang, Xi ; Zhang, Zheng ; Qin, Cui ; Yu, Yu ; Zhang, Xinliang
Author_Institution :
Wuhan Nat. Lab. for Optoelectron., Huazhong Univ. of Sci. & Technol., Wuhan, China
fDate :
6/1/2011 12:00:00 AM
Abstract :
In this paper, we present an optimized quantum-well (QW)-semiconductor optical amplifier (SOA) which is capable of regenerating phase-modulated signals, such as return-to-zero differential-phase-shift keying (RZ-DPSK) signal. Based on the optimized QW SOA, the amplitude fluctuations are suppressed while the phase information is preserved. The essential mechanism of the optimized QW SOA is the low linewidth enhancement factor (α-factor), which can be obtained by means of structural optimization. Based on the numerical model, the power fluctuations can be suppressed from 4.26 mW (33% of input peak power) to 1.59 mW (13% of output peak power) at 40 Gb/s. The average phase noise induced by SOA is as small as 50. Furthermore, the DPSK signal regeneration scheme based on a single QW SOA is quite simple and stable.
Keywords :
differential phase shift keying; optimisation; semiconductor optical amplifiers; RZ-DPSK signal regeneration; low linewidth enhancement factor; quantum-well semiconductor optical amplifier; structural optimization; Charge carrier density; Differential phase shift keying; Mathematical model; Numerical models; Phase noise; Repeaters; Semiconductor optical amplifiers; Phase shift keying; quantum-well devices; semiconductor optical amplifiers;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2011.2123082