Kerr beam self-cleaning in the multimode fiber anomalous dispersion regime
Optics
2018-10-16 v1
Abstract
We experimentally demonstrate Kerr beam self-cleaning in the anomalous dispersion regime of graded-index multimode optical fibers. By using 90 ps duration, highly chirped (2 nm bandwidth at -3dB) optical pulses at 1562 nm, we demonstrate a 2 decades reduction, with respect to previous experiments in the normal dispersion regime, of threshold peak power for beam self-cleaning into the fundamental mode of the fiber, accompanied by more than 65% nonlinear increase of intensity correlation into the fundamental mode. Highly efficient self-selection of the LP11 mode is also observed. Self-cleaned beams remain spatio-temporally stable for more than a decade of variation of the peak pulse power.
Keywords
Cite
@article{arxiv.1810.05878,
title = {Kerr beam self-cleaning in the multimode fiber anomalous dispersion regime},
author = {Y. Leventoux and A. Parriaux and O. Sidelnikov and G. Granger and M. Jossent and L. Lavoute and D. Gaponov and M. Fabert and A. Tonello and K. Krupa and A. Desfarges-Berthelemot and V. Kermene and G. Millot and S. Février and S. Wabnitz and V. Couderc},
journal= {arXiv preprint arXiv:1810.05878},
year = {2018}
}
Comments
4 pages, 6 figures