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Comparison of pulse propagation and gain saturation characteristics among different input pulse shapes in semiconductor optical amplifiers

journal contribution
posted on 2020-10-28, 00:00 authored by S Barua, Narottam DasNarottam Das, S Nordholm, M Razaghi
This paper presents the pulse propagation and gain saturation characteristics for different input optical pulse shapes with different energy levels in semiconductor optical amplifiers (SOAs). A finite-difference beam propagation method (FD-BPM) is used to solve the modified nonlinear Schrödinger equation (MNLSE) for the simulation of nonlinear optical pulse propagation and gain saturation characteristics in the SOAs. In this MNLSE, the gain spectrum dynamics, gain saturation are taken into account those are depend on the carrier depletion, carrier heating, spectral hole-burning, group velocity dispersion, self-phase modulation and two photon absorption. From this simulation, we obtained the output waveforms and spectra for different input pulse shapes considering different input energy levels. It has shown that the output pulse shape has changed due to the variation of input parameters, such as input pulse shape, input pulse width, and input pulse energy levels. It also shown clearly that the peak position of the output waveforms are shifted toward the leading edge which is due to the gain saturation of the SOA. We also compared the gain saturation characteristics in the SOA for different input pulse shapes.

History

Volume

359

Start Page

73

End Page

78

Number of Pages

6

ISSN

0030-4018

Publisher

Elsevier

Language

en

Peer Reviewed

  • Yes

Open Access

  • No

Acceptance Date

2015-09-11

External Author Affiliations

University of Kurdistan, Iran

Era Eligible

  • Yes

Journal

Optics Communications