Possibility of using GLM data for studying plasma phenomena

The article deals with scientific and technical problems associated with the functionality of the geostationary lightning mapper, which is currently used for meteorological monitoring. Results of the study into the Schumann resonance phenomenon and the technical parameters of the mapper were analyze...

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Main Author: Filatov A. L.
Format: Article
Language:English
Published: INFRA-M 2022-09-01
Series:Solar-Terrestrial Physics
Subjects:
Online Access:https://naukaru.ru/en/nauka/article/51602/view
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author Filatov A. L.
author_facet Filatov A. L.
author_sort Filatov A. L.
collection DOAJ
description The article deals with scientific and technical problems associated with the functionality of the geostationary lightning mapper, which is currently used for meteorological monitoring. Results of the study into the Schumann resonance phenomenon and the technical parameters of the mapper were analyzed simultaneously. A hypothesis is offered which suggests that there are pulsations in the time dependences of the radiation power of lightning activity at frequencies corresponding to Schumann resonance. A new application of the geostationary lightning mapper for studying plasma phenomena is proposed. Adding to the mapper an acousto-optic filter and a camera, which has the functions of switching the resolution/frame rate parameters, is shown to be useful for both meteorological and plasma studies.
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spelling doaj.art-20a70823fa4c45f898e9f67a0e0bb89b2022-12-22T03:53:11ZengINFRA-MSolar-Terrestrial Physics2500-05352022-09-0183767910.12737/stp-83202212Possibility of using GLM data for studying plasma phenomenaFilatov A. L.0Fryazino Branch, Kotelnikov Institute of Radio Engineering and Electronics RAS, Moscow, RussiaThe article deals with scientific and technical problems associated with the functionality of the geostationary lightning mapper, which is currently used for meteorological monitoring. Results of the study into the Schumann resonance phenomenon and the technical parameters of the mapper were analyzed simultaneously. A hypothesis is offered which suggests that there are pulsations in the time dependences of the radiation power of lightning activity at frequencies corresponding to Schumann resonance. A new application of the geostationary lightning mapper for studying plasma phenomena is proposed. Adding to the mapper an acousto-optic filter and a camera, which has the functions of switching the resolution/frame rate parameters, is shown to be useful for both meteorological and plasma studies. https://naukaru.ru/en/nauka/article/51602/viewgeostationary lightning mapperschumann resonanceacousto-optical filterhigh-speed shooting
spellingShingle Filatov A. L.
Possibility of using GLM data for studying plasma phenomena
Solar-Terrestrial Physics
geostationary lightning mapper
schumann resonance
acousto-optical filter
high-speed shooting
title Possibility of using GLM data for studying plasma phenomena
title_full Possibility of using GLM data for studying plasma phenomena
title_fullStr Possibility of using GLM data for studying plasma phenomena
title_full_unstemmed Possibility of using GLM data for studying plasma phenomena
title_short Possibility of using GLM data for studying plasma phenomena
title_sort possibility of using glm data for studying plasma phenomena
topic geostationary lightning mapper
schumann resonance
acousto-optical filter
high-speed shooting
url https://naukaru.ru/en/nauka/article/51602/view
work_keys_str_mv AT filatoval possibilityofusingglmdataforstudyingplasmaphenomena