arrow
Return

Orbital-angular-momentum-dependent speckles for spatial mode sorting and demultiplexing

delete2024-04-22
delete7
delete
OA
AI
R
Rui Ma
K
K. Luo
S
Sushil Pokharel
Z
Zhao Wang
O
Olga Korotkova
J
Jing He
L
LI Zhang, Wei
A
Anderson S. L. Gomes
J
Jun Liu *
DOI:10.1364/OPTICA.523846delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Characterizing the orbital -angular -momentum (OAM) modes is critically important for OAM-encoded data transfer. However, traditional characterizing approaches rely on either complex and precise experimental configurations or complicated prior information processing. In these scenarios, the correlation features of OAM-dependent speckles from the scattering effect have received little attention. Here, we investigate the cross -correlation characteristics of the OAM speckles resulting from a scattering medium and propose an appealing alternative for spatial mode sorting and demultiplexing based on the OAM-dependent speckles. We demonstrate theoretically and experimentally that the crosscorrelation operation between two different OAM-dependent speckles can uniformly derive an annulus pattern, whose dimension is determined by the absolute topological charge difference value between the two corresponding OAM modes. Based on this mechanism, the original coherent OAM modes can be easily sorted by implementing the crosscorrelation operation between incoherently measured OAM-dependent speckles. To fully capitalize on the orthogonal feature of the OAM-dependent speckles, we also construct OAM mode demultiplexing experiments using a ground glass diffuser, where both 8 -bit grayscale and 24 -bit RGB OAM-encoded data demultiplexing are successfully demonstrated with superior error rates. Results show that the OAM-dependent speckles, previously treated as a nuisance for practical applications, can be surprisingly utilized as a competitive candidate for OAM mode sorting and demultiplexing, thus opening new directions in optical communication and information processing. (c) 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
Keywords:
LIGHT
SPACE
BEAMS
DECOMPOSITION
TRANSMISSION
GENERATION
AZIMUTHAL
MEDIA

Journal

Optica cover
Optica
IF:
8.5
Papers:
2.4K
Citations:
2.1W

Organization

U
Universidade Federal de Pernambuco
Scholars:
1.2W
Papers: 7.2K
Citations: 5.3K
U
university of miami
Scholars:
3.3W
Papers: 2.5W
Citations: 32
S
shenzhen university
Scholars:
4.4W
Papers: 3.4W
Citations: 72
researcher View more organizations