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Generation of higher-order optical (2+1)-dimensional spatial vector solitons in a nonlinear anisotropic medium
1Institute of Applied Physics, Westfälische Wilhelms-Universität Münster, Corrensstrasse 2-4, D-48149 Münster, Germany. weilnau@uni-muenster.de
Abstract:
We investigate the generation of higher-order optical vector solitons in two transverse dimensions in anisotropic nonlinear media consisting of an incoherent superposition of a Gaussian beam and a higher-order laser mode with a complex internal modal structure. We demonstrate both numerically and experimentally various examples of these stable self-trapped light structures and show that vortex modes carrying topological charge always decay into multiple-humped structures that remain self trapped during propagation. Furthermore, we demonstrate the mutual stabilization of a triple- and a double-humped transverse light structure leading to the formation of a two-dimensional vector soliton without a stabilizing fundamental Gaussian mode.