Ring Pearcey vortex beam dynamics through atmospheric turbulence
Shakti Singh, Sanjay Kumar Mishra, Akhilesh Kumar Mishra

TL;DR
This paper numerically investigates the propagation of ring Pearcey vortex beams through turbulent atmosphere, analyzing their singularity preservation, scintillation index, and beam wander under various turbulence conditions and beam parameters.
Contribution
It provides new insights into the behavior of ring Pearcey vortex beams in turbulent atmospheres, including their robustness and optimal parameters for communication.
Findings
Ring PVB preserves singularity in moderate turbulence.
In strong turbulence, singularity persists only over short distances.
Optimal truncation factor improves scintillation index performance.
Abstract
The subject area of free space optical communication with optical beam carrying orbital angular momentum has attracted a great deal of research attention since last two decades. Efforts to understand, model and execute communication links through turbulent atmosphere with OAM beams have gained particular importance. In this regard, different types of shape preserving beams, which can withstand turbulences of varying strengths, have been proposed and studied. In this paper, we present a numerical investigation of the propagation characteristics of ring Pearcey vortex beam through turbulent atmosphere. The study details on both moderate as well as strong atmospheric turbulences. Modified von Karman model has been relied on to model random phase screen. In moderate turbulence, the ring PVB preserved its singularity. In strong turbulence, the ring PVB preserved its singularity for short…
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Taxonomy
TopicsOrbital Angular Momentum in Optics · Optical Wireless Communication Technologies
