FAST SUBAURORAL DRIFTS OF IONOSPHERE PLASMA ACCORDING TO DATA FROM YAKUT MERIDIONAL CHAIN OF STATIONS

Using long-term data from Yakut meridional chain of Yakutsk — Zhigansk — Batagay — Tixie ionospheric stations, we study ionospheric signatures of fast subauroral ion drift. Sharp drops or “falls” of critical frequencies (FCF) of the ionospheric F layer are shown to be one of the main signatures of t...

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Published in:Solnechno-Zemnaya Fizika
Main Authors: Stepanov A.E., Kobyakova S.E., Khalipov V.L.
Format: Article in Journal/Newspaper
Language:English
Published: INFRA-M 2019
Subjects:
Online Access:https://doi.org/10.12737/szf-54201908
https://doaj.org/article/750f7069413a4eb9b0266e63b54bafac
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author Stepanov A.E.
Kobyakova S.E.
Khalipov V.L.
author_facet Stepanov A.E.
Kobyakova S.E.
Khalipov V.L.
author_sort Stepanov A.E.
collection Directory of Open Access Journals: DOAJ Articles
container_issue 4
container_start_page 73
container_title Solnechno-Zemnaya Fizika
container_volume 5
description Using long-term data from Yakut meridional chain of Yakutsk — Zhigansk — Batagay — Tixie ionospheric stations, we study ionospheric signatures of fast subauroral ion drift. Sharp drops or “falls” of critical frequencies (FCF) of the ionospheric F layer are shown to be one of the main signatures of the development of fast subauroral ion drifts near or at the zenith of the observation station. Comparison between long-term ground-based and satellite measurements indicates that there is good agreement between seasonal variation in the probability of occurrence of FCF derived from ground-based data and subauroral ion drifts derived from DMSP satellite data. Such a coincidence implies that both satellite and ground-based measurement methods register the same phenomenon in the boundary layers of the plasmasphere, namely, the appearance and development of electric fields of magnetospheric origin. The local time for recording of falls of the critical frequency derived from the ground-based data is shown to closely coincide with the appearance time of subauroral polarization streams of plasma according to satellite data. We can therefore conclude that most of the observed FCFs derived from ground-based data refer to intense storms.
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op_doi https://doi.org/10.12737/szf-54201908
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doi:10.12737/szf-54201908
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op_source Solar-Terrestrial Physics, Vol 5, Iss 4, Pp 60-65 (2019)
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spelling ftdoajarticles:oai:doaj.org/article:750f7069413a4eb9b0266e63b54bafac 2025-01-17T01:19:42+00:00 FAST SUBAURORAL DRIFTS OF IONOSPHERE PLASMA ACCORDING TO DATA FROM YAKUT MERIDIONAL CHAIN OF STATIONS Stepanov A.E. Kobyakova S.E. Khalipov V.L. 2019-12-01T00:00:00Z https://doi.org/10.12737/szf-54201908 https://doaj.org/article/750f7069413a4eb9b0266e63b54bafac EN eng INFRA-M https://naukaru.ru/en/nauka/article/33966/view https://doaj.org/toc/2500-0535 doi:10.12737/szf-54201908 2500-0535 https://doaj.org/article/750f7069413a4eb9b0266e63b54bafac Solar-Terrestrial Physics, Vol 5, Iss 4, Pp 60-65 (2019) subauroral ionosphere meridional chain of stations falls of critical frequencies polarization jet Astrophysics QB460-466 article 2019 ftdoajarticles https://doi.org/10.12737/szf-54201908 2022-12-31T13:40:11Z Using long-term data from Yakut meridional chain of Yakutsk — Zhigansk — Batagay — Tixie ionospheric stations, we study ionospheric signatures of fast subauroral ion drift. Sharp drops or “falls” of critical frequencies (FCF) of the ionospheric F layer are shown to be one of the main signatures of the development of fast subauroral ion drifts near or at the zenith of the observation station. Comparison between long-term ground-based and satellite measurements indicates that there is good agreement between seasonal variation in the probability of occurrence of FCF derived from ground-based data and subauroral ion drifts derived from DMSP satellite data. Such a coincidence implies that both satellite and ground-based measurement methods register the same phenomenon in the boundary layers of the plasmasphere, namely, the appearance and development of electric fields of magnetospheric origin. The local time for recording of falls of the critical frequency derived from the ground-based data is shown to closely coincide with the appearance time of subauroral polarization streams of plasma according to satellite data. We can therefore conclude that most of the observed FCFs derived from ground-based data refer to intense storms. Article in Journal/Newspaper Yakutsk Directory of Open Access Journals: DOAJ Articles Yakutsk Zhigansk ENVELOPE(123.374,123.374,66.766,66.766) Solnechno-Zemnaya Fizika 5 4 73 79
spellingShingle subauroral ionosphere
meridional chain of stations
falls of critical frequencies
polarization jet
Astrophysics
QB460-466
Stepanov A.E.
Kobyakova S.E.
Khalipov V.L.
FAST SUBAURORAL DRIFTS OF IONOSPHERE PLASMA ACCORDING TO DATA FROM YAKUT MERIDIONAL CHAIN OF STATIONS
title FAST SUBAURORAL DRIFTS OF IONOSPHERE PLASMA ACCORDING TO DATA FROM YAKUT MERIDIONAL CHAIN OF STATIONS
title_full FAST SUBAURORAL DRIFTS OF IONOSPHERE PLASMA ACCORDING TO DATA FROM YAKUT MERIDIONAL CHAIN OF STATIONS
title_fullStr FAST SUBAURORAL DRIFTS OF IONOSPHERE PLASMA ACCORDING TO DATA FROM YAKUT MERIDIONAL CHAIN OF STATIONS
title_full_unstemmed FAST SUBAURORAL DRIFTS OF IONOSPHERE PLASMA ACCORDING TO DATA FROM YAKUT MERIDIONAL CHAIN OF STATIONS
title_short FAST SUBAURORAL DRIFTS OF IONOSPHERE PLASMA ACCORDING TO DATA FROM YAKUT MERIDIONAL CHAIN OF STATIONS
title_sort fast subauroral drifts of ionosphere plasma according to data from yakut meridional chain of stations
topic subauroral ionosphere
meridional chain of stations
falls of critical frequencies
polarization jet
Astrophysics
QB460-466
topic_facet subauroral ionosphere
meridional chain of stations
falls of critical frequencies
polarization jet
Astrophysics
QB460-466
url https://doi.org/10.12737/szf-54201908
https://doaj.org/article/750f7069413a4eb9b0266e63b54bafac