Statistical characteristics of optical vortices and integral parameters of laser radiation on a wireless power transmission path

The aim of this study is to compare the parameters of laser beams, which initial phase is formed by Zernike polynomials, and beams, which phase is specified by a screen simulating atmospheric turbulence. The study was conducted due to the widespread use of laser radiation in energy and information t...

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Main Authors: Feodor Yu. Kanev, Nailia A. Makenova, Igor D. Veretekhin
Format: Article
Language:English
Published: Tomsk Polytechnic University 2024-09-01
Series:Известия Томского политехнического университета: Промышленная кибернетика
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Online Access:https://indcyb.ru/journal/article/view/67/57
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author Feodor Yu. Kanev
Nailia A. Makenova
Igor D. Veretekhin
author_facet Feodor Yu. Kanev
Nailia A. Makenova
Igor D. Veretekhin
author_sort Feodor Yu. Kanev
collection DOAJ
description The aim of this study is to compare the parameters of laser beams, which initial phase is formed by Zernike polynomials, and beams, which phase is specified by a screen simulating atmospheric turbulence. The study was conducted due to the widespread use of laser radiation in energy and information transmission systems and the need to compensate for radiation distortions on atmospheric route. The solution of the set tasks was implemented based on the methods of numerical experiment. For the analysis in the plane of observation optical vortices, appeared during propagation, and radiation integral characteristics, such as the focusing criterion (power within a given aperture), energy radius and shift of the beam center, were recorded. It was shown that statistical parameters of the distribution of singular points in both cases (polynomials and screen) satisfied the requirements of the central limit theorem. At the same time, differences were observed in the dependence of the number of vortices and integral characteristics of radiation on the length of the propagation path.
format Article
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institution Kabale University
issn 2949-5407
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publishDate 2024-09-01
publisher Tomsk Polytechnic University
record_format Article
series Известия Томского политехнического университета: Промышленная кибернетика
spelling doaj-art-e20e652a3aab4abebc0481c3ecc6bb192025-08-20T03:32:11ZengTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Промышленная кибернетика2949-54072024-09-0123475610.18799/29495407/2024/3/67Statistical characteristics of optical vortices and integral parameters of laser radiation on a wireless power transmission pathFeodor Yu. Kanev0Nailia A. Makenova1Igor D. Veretekhin2Institute of Atmospheric Optics SB RAS, Tomsk, Russian FederationInstitute of Atmospheric Optics SB RAS, Tomsk, Russian Federation; National Research Tomsk Polytechnic University, Tomsk, Russian FederationInstitute of Atmospheric Optics SB RAS, Tomsk, Russian FederationThe aim of this study is to compare the parameters of laser beams, which initial phase is formed by Zernike polynomials, and beams, which phase is specified by a screen simulating atmospheric turbulence. The study was conducted due to the widespread use of laser radiation in energy and information transmission systems and the need to compensate for radiation distortions on atmospheric route. The solution of the set tasks was implemented based on the methods of numerical experiment. For the analysis in the plane of observation optical vortices, appeared during propagation, and radiation integral characteristics, such as the focusing criterion (power within a given aperture), energy radius and shift of the beam center, were recorded. It was shown that statistical parameters of the distribution of singular points in both cases (polynomials and screen) satisfied the requirements of the central limit theorem. At the same time, differences were observed in the dependence of the number of vortices and integral characteristics of radiation on the length of the propagation path.https://indcyb.ru/journal/article/view/67/57optical vorticessingular points of the wave frontlaser radiationatmospheric turbulencevon karman spectrumwireless power transmissionoptical communication lines
spellingShingle Feodor Yu. Kanev
Nailia A. Makenova
Igor D. Veretekhin
Statistical characteristics of optical vortices and integral parameters of laser radiation on a wireless power transmission path
Известия Томского политехнического университета: Промышленная кибернетика
optical vortices
singular points of the wave front
laser radiation
atmospheric turbulence
von karman spectrum
wireless power transmission
optical communication lines
title Statistical characteristics of optical vortices and integral parameters of laser radiation on a wireless power transmission path
title_full Statistical characteristics of optical vortices and integral parameters of laser radiation on a wireless power transmission path
title_fullStr Statistical characteristics of optical vortices and integral parameters of laser radiation on a wireless power transmission path
title_full_unstemmed Statistical characteristics of optical vortices and integral parameters of laser radiation on a wireless power transmission path
title_short Statistical characteristics of optical vortices and integral parameters of laser radiation on a wireless power transmission path
title_sort statistical characteristics of optical vortices and integral parameters of laser radiation on a wireless power transmission path
topic optical vortices
singular points of the wave front
laser radiation
atmospheric turbulence
von karman spectrum
wireless power transmission
optical communication lines
url https://indcyb.ru/journal/article/view/67/57
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AT nailiaamakenova statisticalcharacteristicsofopticalvorticesandintegralparametersoflaserradiationonawirelesspowertransmissionpath
AT igordveretekhin statisticalcharacteristicsofopticalvorticesandintegralparametersoflaserradiationonawirelesspowertransmissionpath