Multi-parameter high-dimensional encoding and decoding based on superimposed-state grafted double-ring elliptic perfect vortex beam arrays

A novel structured light beam, the superimposed-state grafted double-ring elliptic perfect vortex beam (SGDRE-PVB), is proposed and experimentally demonstrated. By synergistically combining a grafted phase structure aligned with the natural bisection of the elliptical major axis and introducing radial multiplexing via an inner-outer double-ring architecture, the beam possesses seven independently tunable intrinsic degrees of freedom. Benefiting from the seven independently adjustable degrees of freedom, a single SGDRE-PVB naturally encodes 16 bits of information, and a 4 × 4 spatially multiplexed array extends the capacity to 256 bits per color channel. As a proof-of-concept demonstration, a 120 × 120 color image is successfully reconstructed by transmitting three such arrays in parallel on three distinct focal planes. By employing a residual network for decoding, a joint recognition accuracy of 97.93% is attained on experimental data, validating the beam’s potential for high-capacity optical communications.

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Publication Details

Journal
Optics and Lasers in Engineering
Published
2026-10-07
DOI
https://doi.org/10.1016/j.optlaseng.2026.110157
Primary Topic
Orbital Angular Momentum in Optics
Type
article
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article

Multi-parameter high-dimensional encoding and decoding based on superimposed-state grafted double-ring elliptic perfect vortex beam arrays

Aning Ma, Xin Li, Dongzhi Duojie, Yonglong Tong et al.
Optics and Lasers in Engineering
Orbital Angular Momentum in Optics
article

Multi-parameter high-dimensional encoding and decoding based on superimposed-state grafted double-ring elliptic perfect vortex beam arrays

Aning Ma, Xin Li, Dongzhi Duojie, Yonglong Tong, Shuo Jiang, Jiping Zheng, Guojian Li
article en

Abstract

A novel structured light beam, the superimposed-state grafted double-ring elliptic perfect vortex beam (SGDRE-PVB), is proposed and experimentally demonstrated. By synergistically combining a grafted phase structure aligned with the natural bisection of the elliptical major axis and introducing radial multiplexing via an inner-outer double-ring architecture, the beam possesses seven independently tunable intrinsic degrees of freedom. Benefiting from the seven independently adjustable degrees of freedom, a single SGDRE-PVB naturally encodes 16 bits of information, and a 4 × 4 spatially multiplexed array extends the capacity to 256 bits per color channel. As a proof-of-concept demonstration, a 120 × 120 color image is successfully reconstructed by transmitting three such arrays in parallel on three distinct focal planes. By employing a residual network for decoding, a joint recognition accuracy of 97.93% is attained on experimental data, validating the beam’s potential for high-capacity optical communications.

Optics and Lasers in EngineeringVol. 208
Minzu University of China (CN), Lanzhou University (CN)
Openalex Percentile: Top 19%
Orbital Angular Momentum in Optics
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Multi-parameter high-dimensional encoding and decoding based on superimposed-state grafted double-ring elliptic perfect vortex beam arrays — Aning Ma, Xin Li, et al. · Optics and Lasers in Engineering (2026) | TGRS Research Map | TGRS