Ultrashort light bullets described by the two-dimensional sine-Gordon equation
Optics
2011-02-08 v1
Abstract
By using a reductive perturbation technique applied to a two-level model, this study puts forward a generic two-dimensional sine-Gordon evolution equation governing the propagation of femtosecond spatiotemporal optical solitons in Kerr media beyond the slowly varying envelope approximation. Direct numerical simulations show that, in contrast to the long-wave approximation, no collapse occurs, and that robust (2+1)-dimensional ultrashort light bullets may form from adequately chosen few-cycle input spatiotemporal wave forms. In contrast to the case of quadratic nonlinearity, the light bullets oscillate in both space and time and are therefore not steady-state lumps.
Keywords
Cite
@article{arxiv.1102.1284,
title = {Ultrashort light bullets described by the two-dimensional sine-Gordon equation},
author = {Hervé Leblond and Dumitru Mihalache},
journal= {arXiv preprint arXiv:1102.1284},
year = {2011}
}