arrow
Return

High-order orbital angular momentum mode-based phase shift-keying communication using phase difference modulation

delete2023-12-13
delete1
delete
OA
AI
J
Jiafu Chen
Z
Zebin Huang
P
Peipei Wang
H
Huapeng Ye
S
Shuqing Chen
D
Dianyuan Fan
J
Junmin Liu *
DOI:10.1364/OE.506843delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Orbital angular momentum (OAM) mode offers a promising modulation dimension for high -order shift -keying (SK) communication due to its mode orthogonality. However, the expansion of modulation order through superposing OAM modes is constrained by the mode -field mismatch resulting from the rapidly increased divergence with mode orders. Herein, we address this problem by propose a phase -difference modulation strategy that breaks the limitation of modulation orders via introducing a phase -difference degree of freedom (DoF) beyond OAM modes. Phase -difference modulation exploits the sensitivity of mode interference to phase differences, thereby providing distinct tunable parameters. This enables the generation of a series of codable spatial modes with continuous variation within the same superposed OAM modes by manipulating the interference state. Due to the inherent independence between OAM mode and phase -difference DoF, the number of codable modes increases exponentially, which facilitates establishing ultra -high -order phase shift -keying by discretizing the continuous phase difference and establishing a one-to-one mapping between coding symbols and constructed modes. We show that a phase shift -keying communication link with a modulation order of up to 4 x 104 is achieved by employing only 3 OAM modes (+1, + 2 and +3), and the decode accuracy reaches 99.9%. Since the modulation order is exponentially correlated with the OAM modes and phase differences, the order can be greatly improved by further increasing the superimposed OAM modes, which may provide new insight for high -order OAM-based SK communication. (c) 2023 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
Keywords:
TRANSMISSION
CAPACITY
LIGHT

Journal

Optics Express cover
Optics Express
IF:
3.3
Papers:
6.1W
Citations:
14.3W

Organization

S
south china normal university
Scholars:
2.0W
Papers: 1.3W
Citations: 13
S
Shenzhen Technology University
Scholars:
3.5K
Papers: 2.3K
Citations: 4.1K
S
shenzhen university
Scholars:
4.5W
Papers: 3.4W
Citations: 72
researcher View more organizations