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A theoretical model for analyzing the combined effects of amplified spontaneous emission (ASE) and intraband process on the propagation of pulses through SOA is presented. An analysis for the differential equations and the related parameters that describe the self phase modulation SPM in SOA is presented. Moreover, the effects of these variations on the pulse shape and spectrum is explained. A method for driving the coupled propagation equations of the FWM process in SOA (for the case of the pump-probe configuration) is proposed, which can be extended to find the propagation equations of any…mehr

Produktbeschreibung
A theoretical model for analyzing the combined effects of amplified spontaneous emission (ASE) and intraband process on the propagation of pulses through SOA is presented. An analysis for the differential equations and the related parameters that describe the self phase modulation SPM in SOA is presented. Moreover, the effects of these variations on the pulse shape and spectrum is explained. A method for driving the coupled propagation equations of the FWM process in SOA (for the case of the pump-probe configuration) is proposed, which can be extended to find the propagation equations of any number of signals. SOA is divided theoretically into many segments in longitudinal z direction, so that the pump power change in each segment can be considered very small , this leads to solving the coupled propagation equations analytically.
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Autorenporträt
Sadiq J. Kadhim received his BSc and MSc from the college of science, Baghdad University, Iraq in 1977 and 1979, respectively. He received his PhD from the college of education, Al-Mustansyria University, Iraq in 2012. His current research interests include theoretical physics and nonlinear optics. He is currently a lecturer of fiber optics.