Spatial optical solitons in highly nonlocal media

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Abstract

We theoretically investigate the propagation of bright spatial solitary waves in highly nonlocal media possessing radial symmetry in a three-dimensional cylindrical geometry. Focusing on a thermal nonlinearity, modeled by a Poisson equation, we show how the profile of the light-induced waveguide strongly depends on the extension of the nonlinear medium in the propagation direction as compared to the beamwidth. We demonstrate that self-trapped beams undergo oscillations in size, either periodically or aperiodically, depending on the input waist and power. The - usually neglected - role of the longitudinal nonlocality as well as the detrimental effect of absorptive losses are addressed.

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Alberucci, A., Jisha, C. P., Smyth, N. F., & Assanto, G. (2015). Spatial optical solitons in highly nonlocal media. Physical Review A - Atomic, Molecular, and Optical Physics, 91(1). https://doi.org/10.1103/PhysRevA.91.013841

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