DocumentCode :
3688318
Title :
Stochastic anti-resonance in a fibre raman amplifier
Author :
Vladimir L. Kalashnikov;Sergey V. Sergeyev
Author_Institution :
Aston Institute of Photonic Technologies, Aston University, Aston Triangle, Birmingham B4 7ET, UK
fYear :
2015
Firstpage :
1
Lastpage :
3
Abstract :
Stochastic anti-resonance, that is resonant enhancement of randomness caused by polarization mode beatings, is analyzed both numerically and analytically on an example of fibre Raman amplifier with randomly varying birefringence. As a result of such anti-resonance, the polarization mode dispersion growth causes an escape of the signal state of polarization from a metastable state corresponding to the pulling of the signal to the pump state of polarization.This phenomenon reveals itself in abrupt growth of gain fluctuations as well as in dropping of Hurst parameter and Kramers length characterizing long memory in a system and noise induced escape from the polarization pulling state. The results based on analytical multiscale averaging technique agree perfectly with the numerical data obtained by direct numerical simulations of underlying stochastic differential equations. This challenging outcome would allow replacing the cumbersome numerical simulations for real-world extra-long high-speed communication systems.
Keywords :
"Stimulated emission","Stochastic processes","Optical fiber amplifiers","Numerical simulation","Polarization mode dispersion","Fluctuations","Gain"
Publisher :
ieee
Conference_Titel :
Spatiotemporal Complexity in Nonlinear Optics (SCNO), 2015
Type :
conf
DOI :
10.1109/SCNO.2015.7324003
Filename :
7324003
Link To Document :
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