A variational approach to optical soliton collisions
Journal article, 1994

The mathematical analogy between the nonlinear Schrödinger equations describing propagation of temporal soliton pulses in optical fibres, and propagation of spatial soliton beams in planar optical wave guides is discussed. A straightforward variational method, based on trial functions and Rayleigh-Ritz optimization, is demonstrated and applied to incoherent interaction of solitons. We study incoherent soliton interaction in a wavelength-multiplexed optical-fibre communication system, as well as the analogous problem for crossed optical beams in a planar waveguide. The predictions of the variational approach are also shown to be in good agreement with numerical simulation results and with experiments.

Author

Magnus Karlsson

Department of Electromagnetic Field Theory

Dan Anderson

Department of Electromagnetic Field Theory

Anders Höök

Department of Electromagnetic Field Theory

Mietek Lisak

Department of Electromagnetic Field Theory

Physica Scripta

00318949 (ISSN) 14024896 (eISSN)

Vol. 50 3 265-270

Subject Categories

Atom and Molecular Physics and Optics

Condensed Matter Physics

DOI

10.1088/0031-8949/50/3/008

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