Title :
Interferometric Crosstalk Reduction in an RSOA-Based WDM Passive Optical Network
Author :
Urban, Patryk J. ; Koonen, A.M.J. ; Khoe, G. Djan ; De Waardt, Huug
Author_Institution :
COBRA Res. Inst., Eindhoven Univ. of Technol. (TU/e), Eindhoven, Netherlands
Abstract :
Reflection and Rayleigh backscattering-induced interferometric crosstalk in a link employing a reflective semiconductor optical amplifier (RSOA) may cause significant power penalty and, thus, limit the performance of the system. In this paper, we investigate interferometric crosstalk suppression in a centralized light generation wavelength division multiplexing-passive optical network (WDM-PON) by single-tone phase modulation either by utilizing the nonlinear behavior of the RSOA at the optical network unit (ONU) or by applying an external phase modulator at the source side. 6- and 7-dB reduction in power penalty for reflection-induced crosstalk is achieved, respectively. For Rayleigh backscattering-induced crosstalk power penalty is improved with 3 and 4.5 dB, respectively. The results show that an RSOA is very sensitive to reflections and backscattering and the tolerance to these impairments can be significantly improved by appropriate phase modulation. A comparison with advantages and disadvantages of both methods together with final recommendation is also given in the paper.
Keywords :
Rayleigh scattering; light interferometry; light reflection; nonlinear optics; optical crosstalk; optical fibre networks; optical modulation; phase modulation; semiconductor optical amplifiers; wavelength division multiplexing; RSOA-based WDM passive optical network; Rayleigh backscattering; interferometric crosstalk reduction; nonlinear behavior; power penalty; reflection-induced crosstalk; reflective semiconductor optical amplifier; single-tone phase modulation; wavelength division multiplexing; Backreflection; Rayleigh backscattering; bidirectional transmission; interferometric noise; optical crosstalk; passive optical networks; reflective semiconductor optical amplifier (RSOA); wavelength division multiplexing;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2009.2026916