Algorithmic decoding of dense OAM signal constellations for optical communications in turbulence

Anguita, J.A.; Cisternas J.E.

Abstract

Wedemonstrateanopticaldetectionanddecodingstrategytoincreasetheinformation rate and spectral efficiency of free-space laser communication links affected by turbulence by means of dense orbital angular momentum (OAM) modulation. Using three candidate receiver architectures–based on a Shack-Hartmann sensor, a Mode Sorter, and a complex conjugate projection scheme as a base case–we demonstrate an algorithmic classification system based on the received OAM spectra produced by these architectures. This classification scheme allows low-error-rate data transmission in turbulence using 16-OAM, 32-OAM, and 64-OAM symbol constellations, with OAM states between −20 and 20. We evaluate and compare their performance under weak to strong atmospheric turbulence conditions using an accuracy metric and confusion matrices.

Más información

Título de la Revista: OPTICS EXPRESS
Volumen: 30
Número: 8
Editorial: OPTICAL SOC AMER
Fecha de publicación: 2022
Página de inicio: 13540
Página final: 13555
Financiamiento/Sponsor: ANID Iniciativa Milenio ICN17-012; FONDECYT FR-1210297
URL: https://doi.org/10.1364/OE.455425
Notas: ISI