Dynamics of incoherent bright and dark self-trapped beams and their coherence properties in photorefractive crystals
Optics letters, 1998•opg.optica.org
Using the coherent density approach, we study the propagation dynamics of incoherent
bright and dark beams in biased photorefractive crystals. We show that, under appropriate
initial conditions, bright as well as darklike incoherent quasi-solitons can be established in
this material system. Our numerical simulations demonstrate that the coherence properties
of these beams can be significantly affected by the self-trapping process.
bright and dark beams in biased photorefractive crystals. We show that, under appropriate
initial conditions, bright as well as darklike incoherent quasi-solitons can be established in
this material system. Our numerical simulations demonstrate that the coherence properties
of these beams can be significantly affected by the self-trapping process.
Using the coherent density approach, we study the propagation dynamics of incoherent bright and dark beams in biased photorefractive crystals. We show that, under appropriate initial conditions, bright as well as darklike incoherent quasi-solitons can be established in this material system. Our numerical simulations demonstrate that the coherence properties of these beams can be significantly affected by the self-trapping process.
opg.optica.org
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