DocumentCode :
1291371
Title :
Parametric Amplification and Wavelength Conversion of Single- and Dual-Polarization DQPSK Signals
Author :
Richter, Thomas ; Elschner, Robert ; Gandhe, Amruta ; Petermann, Klaus ; Schubert, Colja
Author_Institution :
Fraunhofer Inst. for Telecommun., Heinrich-Hertz-Inst., Berlin, Germany
Volume :
18
Issue :
2
fYear :
2012
Firstpage :
988
Lastpage :
995
Abstract :
We demonstrate system experiments for polarization-independent parametric amplification and wavelength conversion of single-channel differential quadrature phase-shift keying (DQPSK) signals up to 112 Gbit/s. Dual-pump four-wave mixing in a highly nonlinear fiber is utilized to achieve up to 20 dB ON-OFF gain and conversion efficiency. The investigations are done in a polarization-dependent (straight) as well as in a polarization-independent (loop) configuration using single- and dual-polarization DQPSK. Particular attention is paid to the resulting optical signal-to-noise ratio penalties after the amplification. We ascribe this to pump-induced nonlinear phase noise. It is shown that this type of excess noise is increased for the loop configuration in comparison with the straight configuration due to Rayleigh backscattering and that it depends on the input polarization of the signal. Still, the penalty can be made negligible using high-quality pump sources.
Keywords :
backscatter; differential phase shift keying; multiwave mixing; optical fibre polarisation; optical parametric amplifiers; optical pumping; optical wavelength conversion; phase noise; Rayleigh backscattering; differential quadrature phase shift keying; dual pump four wave mixing; dual-polarization DQPSK signals; nonlinear fiber; nonlinear phase noise; optical signal-to-noise ratio; parametric amplification; single-polarization DQPSK signals; wavelength conversion; Bit error rate; Gain; Optical attenuators; Optical noise; Optical wavelength conversion; Signal to noise ratio; Wavelength measurement; Differential quadrature phase-shift keying (DQPSK); fiber nonlinear optics; four-wave mixing (FWM); optical wavelength conversion;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2011.2155035
Filename :
5976367
Link To Document :
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