OAM-Assisted Self-Healing Is Directional, Proportional and Persistent
Abstract
In this paper we demonstrate the postulated mechanism of self-healing specifically due to orbital-angular-momentum (OAM) in radio vortex beams having equal beam-widths. In previous work we experimentally demonstrated self-healing effects in OAM beams at 28 GHz and postulated a theoretical mechanism to account for them. In this work we further characterize the OAM self-healing mechanism theoretically and confirm those characteristics with systematic and controlled experimental measurements on a 28 GHz outdoor link. Specifically, we find that the OAM self-healing mechanism is an additional self-healing mechanism in structured electromagnetic beams which is directional with respect to the displacement of an obstruction relative to the beam axis. We also confirm our previous findings that the amount of OAM self-healing is proportional to the OAM order, and additionally find that it persists beyond the focusing region into the far field. As such, OAM-assisted self-healing brings an advantage over other so-called non-diffracting beams both in terms of the minimum distance for onset of self-healing and the amount of self-healing obtainable. We relate our findings by extending theoretical models in the literature and develop a unifying electromagnetic analysis to account for self-healing of OAM-bearing non-diffracting beams more rigorously.
Keywords
Cite
@article{arxiv.2504.02103,
title = {OAM-Assisted Self-Healing Is Directional, Proportional and Persistent},
author = {Marek Klemes and Lan Hu and Greg Bowles and Alireza Ghayekhloo and Mohammad Akbari and Soulideth Thirakoune and Michael Schwartzman and Kevin Zhang and Tan Huy Ho and David Wessel and Wen Tong},
journal= {arXiv preprint arXiv:2504.02103},
year = {2025}
}
Comments
20 pages, including 2 appendices