Authors
Xuanhui Kuang, Siyuan Fang, Zheqiang Zhong, Bin Zhang
Published in
Journal of the Optical Society of America. A, Optics, image science, and vision. Volume 43. Issue 10. Pages 1564-1574. Oct 01, 2026.
Abstract
In this paper, the physical model for the quasi-Airy hypergeometric-Gaussian (QAHyGG) beam propagating in atmospheric turbulence is built up based on the modified von Kármán model. We analyze the propagation characteristics of the QAHyGG beam and reveal the influence of key parameters on their propagation performance. The results demonstrate that the QAHyGG beam possesses strong self-focusing properties and effectively mitigates turbulence-induced wavefront distortions, maintaining high energy localization along the propagation path. Compared with conventional Airy and Gaussian beams, the QAHyGG beam achieves higher transmission efficiency and reduced centroid drift. This is further demonstrated by the experimental results, which closely agree in beam trajectories and characteristics. These results confirm that the QAHyGG beam provides a promising candidate for atmospheric engineering applications.
PMID:
42837594
Bibliographic data and abstract were imported from PubMed on 07 Oct 2026.
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