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Observation of diffraction-managed discrete solitons in curved waveguide arrays
A. Szameit, I. L. Garanovich, M. Heinrich, A. Minovich, F. Dreisow, A. A. Sukhorukov, T. Pertsch, D. N. Neshev, S. Nolte, W. Krolikowski, A. Tunnermann, A. Mitchell, and Yu. S. Kivshar,
Phys. Rev. A 78, 031801-4 (2008).
[Full-text PDF (349 Kb)]
[Online]
Abstract: We observe the formation of discrete diffraction-managed optical solitons in arrays of periodically curved coupled waveguides for two types of modulated structures: laser-written arrays in silica glass with self-focusing nonlinearity and lithium niobate waveguide arrays with self-defocusing photorefractive nonlinearity. Our results demonstrate that, for both types of nonlinear response, soliton formation occurs after transitional self-induced beam broadening, being fundamentally different from nonlinear self-focusing and defocusing in a bulk medium or discrete self-trapping in straight waveguides.
Keywords: optical bloch oscillations; dynamic localization; fused-silica; particle; field
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