English

Radially correlated partially coherent beams with a deterministic vortex structure

Optics 2026-07-17 v1

Abstract

Partially coherent beams have attracted considerable attention due to their intrinsic resilience against complex environmental perturbations. However, the intrinsic wavefront fluctuations make it fundamentally challenging to preserve well-defined orbital angular momentum during propagation. In this work, we propose and experimentally demonstrate a class of radially correlated, partially coherent beams that carry deterministic vortex structures, generated via optical conformal mapping from Cartesian to log-polar coordinates. The resulting beams exhibit a ring-shaped coherence distribution, characterized by low coherence in the radial direction and high coherence in the azimuthal direction. This unique feature of such a beam supports a well-defined deterministic vortex phase, thereby enabling the beam to preserve its ring-shaped coherence distribution during propagation through a focusing system. Our results provide new insights into the design of new partially coherent beams and may facilitate the development of applications in optical encoding, free-space information transmission, and ultrafast light-matter interactions.

Cite

@article{arxiv.2607.15644,
  title  = {Radially correlated partially coherent beams with a deterministic vortex structure},
  author = {Xinru Lian and Yaning Zhou and Xin Liu and Zhao Zhang and Qian Chen and Keyu Zhou and Weining Wang and Chunhao Liang and Yangjian Cai and Jingsong Liu},
  journal= {arXiv preprint arXiv:2607.15644},
  year   = {2026}
}