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JOURNALS // Computer Optics // Archive

Computer Optics, 2020 Volume 44, Issue 3, Pages 352–362 (Mi co797)

This article is cited in 13 papers

OPTO-IT

Algorithm for reconstructing complex coefficients of Laguerre–Gaussian modes from the intensity distribution of their coherent superposition

S. G. Volotovskya, S. V. Karpeevab, S. N. Khoninaba

a Ñàìàðñêèé íàöèîíàëüíûé èññëåäîâàòåëüñêèé óíèâåðñèòåò èìåíè àêàäåìèêà Ñ.Ï. Êîðîë¸âà, 443086, Ðîññèÿ, Ñàìàðñêàÿ îáëàñòü, ã. Ñàìàðà, Ìîñêîâñêîå øîññå, ä. 34
b Samara National Research University, 443086, Samara, Russia, Moskovskoye Shosse 34

Abstract: In this paper, we consider a problem of reconstructing complex coefficients of the coherent su-perposition of Laguerre–Gaussian modes from the field intensity in a plane perpendicular to the propagation axis at a given distance using the Levenberg–Marquardt and Brent algorithm. The efficiency of using stage-by-stage optimization to restore complex coefficients of a superposition is demonstrated not only on model, but also on experimental intensity distributions. The algorithm can be used in optical information transmission through a turbulent atmosphere to process the received intensity distribution of the optical signal.

Keywords: optical information transmission, Laguerre–Gaussian modes, optimization of approximation by a modes’ superposition, reconstruction of complex coefficients, Levenberg–Marquardt algorithm, Brent algorithm.

Received: 27.03.2020
Accepted: 24.04.2020

DOI: 10.18287/2412-6179-CO-727



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