Optik | 2021

Nonautonomous solitons of the novel nonlinear Schrödinger equation: Self-compression, amplification, and the bound state decay in external potentials

 
 
 

Abstract


Abstract The generalized nonautonomous nonlinear Schrodinger equation is introduced in the framework of the nonisospectral generalization of the Inverse Scattering Transform method with associated spectral parameter varying in accordance with the Riccati equation. Nonautonomous solitons of the introduced model conserve the soliton main feature to interact elastically both in the linear, parabolic, and cubic external potentials, and are controlled only if the varying dispersion and nonlinearity satisfy to the conditions of the exact integrability. Novel features of nonautonomous solitons arising due to the dependence between the soliton amplitudes and their velocities consist in the decay of the soliton bound states.

Volume 244
Pages 167584
DOI 10.1016/J.IJLEO.2021.167584
Language English
Journal Optik

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