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Journal article

Escape angles in bulk chi((2)) soliton interactions

From

Fibers & Nonlinear Optics, Department of Photonics Engineering, Technical University of Denmark1

Department of Informatics and Mathematical Modeling, Technical University of Denmark2

We develop a theory for nonplanar interaction between two identical type I spatial solitons propagating at opposite, but arbitrary transverse angles in quadratic nonlinear (or so-called chi((2))) bulk, media. We predict quantitatively the outwards escape angle, below which the solitons turn around and collide, and above which they continue to move-away from each other.

For in-plane interaction, the theory allows prediction of the Outcome of a collision through the inwards escape angle, i.e., whether the solitons fuse or cross. We find an analytical expression determining the inwards escape angle using Gaussian approximations for the solitons. The theory is verified numerically.

Language: English
Year: 2002
Pages: 026601
ISSN: 15393755 , 24700053 , 24700045 , 1063651x and 10953787
Types: Journal article
DOI: 10.1103/PhysRevE.65.026601
ORCIDs: Bang, Ole and Sørensen, Mads Peter

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