Orbital angular momentum transmission in time-varying scattering media using dual orthogonal polarization channels

Fuente: arXiv
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Main Authors: Li, Heshen, Wei, Jin, Zhang, Tianshun, Chen, Wen
Format: Preprint
Published: 2026
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author Li, Heshen
Wei, Jin
Zhang, Tianshun
Chen, Wen
author_facet Li, Heshen
Wei, Jin
Zhang, Tianshun
Chen, Wen
contents Orbital angular momentum (OAM) has been regarded as a potential dimension for optical communication and related fields. Despite several studies, the transmission of OAM beams through time-varying scattering media remains a challenge. In this paper, we report a method for OAM transmission through time-varying scattering media using dual orthogonal polarization channels, in which one channel carries a perfect vortex beam (PVB) carrying data, and the other serves as a reference plane wave. By calculating the second-order cross-correlation of speckle patterns generated by the PVB and the plane wave, the original data can be decoded. It is also shown that multiplexed PVBs carrying specific topological charges can produce interference patterns in the acquired cross-correlation images, thereby greatly enhancing transmission capacity. Experimental results show that the proposed method can transmit at least 6 bits per beam with 100% accuracy. Moreover, the proposed method is highly robust to variations in the receiving end's position in both radial and axial directions. The proposed method enables the practical deployment of OAM transmission in realistic optical communication and related applications.
format Preprint
id arxiv_https___arxiv_org_abs_2605_05230
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Orbital angular momentum transmission in time-varying scattering media using dual orthogonal polarization channels
Li, Heshen
Wei, Jin
Zhang, Tianshun
Chen, Wen
Optics
Applied Physics
Instrumentation and Detectors
Orbital angular momentum (OAM) has been regarded as a potential dimension for optical communication and related fields. Despite several studies, the transmission of OAM beams through time-varying scattering media remains a challenge. In this paper, we report a method for OAM transmission through time-varying scattering media using dual orthogonal polarization channels, in which one channel carries a perfect vortex beam (PVB) carrying data, and the other serves as a reference plane wave. By calculating the second-order cross-correlation of speckle patterns generated by the PVB and the plane wave, the original data can be decoded. It is also shown that multiplexed PVBs carrying specific topological charges can produce interference patterns in the acquired cross-correlation images, thereby greatly enhancing transmission capacity. Experimental results show that the proposed method can transmit at least 6 bits per beam with 100% accuracy. Moreover, the proposed method is highly robust to variations in the receiving end's position in both radial and axial directions. The proposed method enables the practical deployment of OAM transmission in realistic optical communication and related applications.
title Orbital angular momentum transmission in time-varying scattering media using dual orthogonal polarization channels
topic Optics
Applied Physics
Instrumentation and Detectors
url https://arxiv.org/abs/2605.05230