Experimental observation of anisotropic diffraction induced by orbital angular momentum
Abstract
We reveal for the first time a direct relationship between the diffraction of optical beams and their carrying orbital angular momentum (OAM). We experimentally demonstrate a novel phenomenon that the anisotropic diffraction can be induced by the OAM, predicted by us [Opt. Express, \textbf{26}, 8084 (2018)], via the propagations of the elliptic beams with the OAM in linearly and both-linearly-and-nonlinearly isotropic media, respectively. In the former case, when its carrying OAM equals the so-called critical OAM, the spiraling elliptic Gaussian beam (fundamental eigenmode) is observed in the free space, where only the eigenmode with cylindrical-symmetry is supposed to exist for the beam without the OAM. In the latter case, the spiraling elliptic soliton, predicted by Desyatnikov et al. [Phys. Rev. Lett, \textbf{104}, 053902 (2010)], is observed to stably propagate in a cylindrical lead glass. The power-controllable rotation of such an elliptic beam is also experimentally demonstrated.
Cite
@article{arxiv.1908.10829,
title = {Experimental observation of anisotropic diffraction induced by orbital angular momentum},
author = {Guo Liang and Huicong Zhang and Lei Fang and Qian Shou and Wei Hu and Qi Guo},
journal= {arXiv preprint arXiv:1908.10829},
year = {2019}
}
Comments
6 pages, 7 figures, one file about supplemental information