Propagation of dispersion–nonlinearity-managed solitons in an inhomogeneous erbium-doped fiber system

Mahalingam, A. ; Porsezian, K. ; Mani Rajan, M. S. ; Uthayakumar, A. (2009) Propagation of dispersion–nonlinearity-managed solitons in an inhomogeneous erbium-doped fiber system Journal of Physics A: Mathematical and Theoretical, 42 (16). p. 165101. ISSN 1751-8113

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Official URL: http://iopscience.iop.org/1751-8121/42/16/165101/

Related URL: http://dx.doi.org/10.1088/1751-8113/42/16/165101

Abstract

In this paper, a generalized nonlinear Schrödinger–Maxwell–Bloch model with variable dispersion and nonlinearity management functions, which describes the propagation of optical pulses in an inhomogeneous erbium-doped fiber system under certain restrictive conditions, is under investigation. We derive the Lax pair with a variable spectral parameter and the exact soliton solution is generated from the Bäcklund transformation. It is observed that stable solitons are possible only under a very restrictive condition for the spectral parameter and other inhomogeneous functions. For various forms of the inhomogeneous dispersion, nonlinearity and gain/loss functions, construction of different types of solitary waves like classical solitons, breathers, etc is discussed.

Item Type:Article
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Deposited On:13 May 2013 11:06
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