Abstract

The influence of a dispersion of the linear mode coupling coefficient of an optical waveguide (OWG) with Kerr nonlinearity on the dispersion parameters and dynamics of an optical pulse propagating in such a system is studied. In OWGs with a strong linear mode coupling, the presence of a dispersion of the mode coupling may lead to a significant decrease in the energy threshold for nonlinear self-compression of pulses as compared to the case of a single-mode OWG.

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