Two-dimensional vector solitons stabilized by a linear or nonlinear lattice acting in one component

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Published 12 January 2011 Europhysics Letters Association
, , Citation O. V. Borovkova et al 2010 EPL 92 64001 DOI 10.1209/0295-5075/92/64001

0295-5075/92/6/64001

Abstract

The subject of the work is the stabilization of two-dimensional (2D) two-component (vector) solitons, in media with the attractive cubic nonlinearity, against the collapse by a linear lattice (LL, which is induced by a periodic modulation of the refractive index in optics, or created as an optical lattice in BEC), or by a nonlinear lattice (NL, induced by a periodic modulation of the nonlinearity coefficient). We demonstrate that, due to the XPM (cross-phase-modulation) coupling between the components, the LL or NL acting on a single component is sufficient for the stabilization of vector solitons, that include a component for which the self-focusing medium is uniform. In the case of the LL, the vector solitons are stable almost in their entire existence domain, while the NL can only stabilize the solitons in which the component affected by the lattice carries a norm which is comparable to, or larger than the norm of the component in the uniform medium.

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10.1209/0295-5075/92/64001