An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite

The global positioning system (GPS) phase scintillation caused by highlatitude ionospheric irregularities during an intense high-speed stream (HSS) of the solar wind from April 29 to May 5, 2011, was observed using arrays of GPS ionospheric scintillation and total electron content monitors in the Ar...

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Published in:Annals of Geophysics
Main Authors: Prikryl, P., Zhang, Y., Ebihara, Y., Ghoddousi-Fard, R., Jayachandran, P.T., Kinrade, J., Mitchell, C.N., Weatherwax, A.T., Bust, G., Cilliers, P.J., Spogli, L., Alfonsi, L., Romano, V., Ning, B., Li, G., Jarvis, M.J., Danskin, D.W., Spanswick, E., Donovan, E., Terkildsen, M.
Format: Article in Journal/Newspaper
Language:English
Published: 2013
Subjects:
Online Access:https://researchportal.bath.ac.uk/en/publications/ad632c4c-73e0-476d-9f83-ebcf07d99e5c
https://doi.org/10.4401/ag-6227
https://purehost.bath.ac.uk/ws/files/11999612/6227_12576_1_PB.pdf
http://www.scopus.com/inward/record.url?scp=84879044131&partnerID=8YFLogxK
http://www.annalsofgeophysics.eu/index.php/annals/article/view/6227
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spelling ftunivbathcris:oai:purehost.bath.ac.uk:publications/ad632c4c-73e0-476d-9f83-ebcf07d99e5c 2024-05-12T07:54:07+00:00 An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite Prikryl, P. Zhang, Y. Ebihara, Y. Ghoddousi-Fard, R. Jayachandran, P.T. Kinrade, J. Mitchell, C.N. Weatherwax, A.T. Bust, G. Cilliers, P.J. Spogli, L. Alfonsi, L. Romano, V. Ning, B. Li, G. Jarvis, M.J. Danskin, D.W. Spanswick, E. Donovan, E. Terkildsen, M. 2013 application/pdf https://researchportal.bath.ac.uk/en/publications/ad632c4c-73e0-476d-9f83-ebcf07d99e5c https://doi.org/10.4401/ag-6227 https://purehost.bath.ac.uk/ws/files/11999612/6227_12576_1_PB.pdf http://www.scopus.com/inward/record.url?scp=84879044131&partnerID=8YFLogxK http://www.annalsofgeophysics.eu/index.php/annals/article/view/6227 eng eng https://researchportal.bath.ac.uk/en/publications/ad632c4c-73e0-476d-9f83-ebcf07d99e5c info:eu-repo/semantics/openAccess Prikryl , P , Zhang , Y , Ebihara , Y , Ghoddousi-Fard , R , Jayachandran , P T , Kinrade , J , Mitchell , C N , Weatherwax , A T , Bust , G , Cilliers , P J , Spogli , L , Alfonsi , L , Romano , V , Ning , B , Li , G , Jarvis , M J , Danskin , D W , Spanswick , E , Donovan , E & Terkildsen , M 2013 , ' An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite ' , Annals of Geophysics , vol. 56 , no. 2 , pp. R0216 . https://doi.org/10.4401/ag-6227 article 2013 ftunivbathcris https://doi.org/10.4401/ag-6227 2024-04-16T02:25:55Z The global positioning system (GPS) phase scintillation caused by highlatitude ionospheric irregularities during an intense high-speed stream (HSS) of the solar wind from April 29 to May 5, 2011, was observed using arrays of GPS ionospheric scintillation and total electron content monitors in the Arctic and Antarctica. The one-minute phase-scintillation index derived from the data sampled at 50 Hz was complemented by a proxy index (delta phase rate) obtained from 1-Hz GPS data. The scintillation occurrence coincided with the aurora borealis and aurora australis observed by an all-sky imager at the South Pole, and by special sensor ultraviolet scanning imagers on board satellites of the Defense Meteorological Satellites Program. The South Pole (SP) station is approximately conjugate with two Canadian High Arctic Ionospheric Network stations on Baffin Island, Canada, which provided the opportunity to study magnetic conjugacy of scintillation with support of riometers and magnetometers. The GPS ionospheric pierce points were mapped at their actual or conjugate locations, along with the auroral emission over the South Pole, assuming an altitude of 120 km. As the aurora brightened and/or drifted across the field of view of the all-sky imager, sequences of scintillation events were observed that indicated conjugate auroras as a locator of simultaneous or delayed bipolar scintillation events. In spite of the greater scintillation intensity in the auroral oval, where phase scintillation sometimes exceeded 1 radian during the auroral break-up and substorms, the percentage occurrence of moderate scintillation was highest in the cusp. Interhemispheric comparisons of bipolar scintillation maps show that the scintillation occurrence is significantly higher in the southern cusp and polar cap. Article in Journal/Newspaper Antarc* Antarctica Arctic aurora australis Baffin Island Baffin Canadian High Arctic Ionospheric Network South pole South pole University of Bath's research portal Arctic Baffin Island Canada South Pole Annals of Geophysics 56 2
institution Open Polar
collection University of Bath's research portal
op_collection_id ftunivbathcris
language English
description The global positioning system (GPS) phase scintillation caused by highlatitude ionospheric irregularities during an intense high-speed stream (HSS) of the solar wind from April 29 to May 5, 2011, was observed using arrays of GPS ionospheric scintillation and total electron content monitors in the Arctic and Antarctica. The one-minute phase-scintillation index derived from the data sampled at 50 Hz was complemented by a proxy index (delta phase rate) obtained from 1-Hz GPS data. The scintillation occurrence coincided with the aurora borealis and aurora australis observed by an all-sky imager at the South Pole, and by special sensor ultraviolet scanning imagers on board satellites of the Defense Meteorological Satellites Program. The South Pole (SP) station is approximately conjugate with two Canadian High Arctic Ionospheric Network stations on Baffin Island, Canada, which provided the opportunity to study magnetic conjugacy of scintillation with support of riometers and magnetometers. The GPS ionospheric pierce points were mapped at their actual or conjugate locations, along with the auroral emission over the South Pole, assuming an altitude of 120 km. As the aurora brightened and/or drifted across the field of view of the all-sky imager, sequences of scintillation events were observed that indicated conjugate auroras as a locator of simultaneous or delayed bipolar scintillation events. In spite of the greater scintillation intensity in the auroral oval, where phase scintillation sometimes exceeded 1 radian during the auroral break-up and substorms, the percentage occurrence of moderate scintillation was highest in the cusp. Interhemispheric comparisons of bipolar scintillation maps show that the scintillation occurrence is significantly higher in the southern cusp and polar cap.
format Article in Journal/Newspaper
author Prikryl, P.
Zhang, Y.
Ebihara, Y.
Ghoddousi-Fard, R.
Jayachandran, P.T.
Kinrade, J.
Mitchell, C.N.
Weatherwax, A.T.
Bust, G.
Cilliers, P.J.
Spogli, L.
Alfonsi, L.
Romano, V.
Ning, B.
Li, G.
Jarvis, M.J.
Danskin, D.W.
Spanswick, E.
Donovan, E.
Terkildsen, M.
spellingShingle Prikryl, P.
Zhang, Y.
Ebihara, Y.
Ghoddousi-Fard, R.
Jayachandran, P.T.
Kinrade, J.
Mitchell, C.N.
Weatherwax, A.T.
Bust, G.
Cilliers, P.J.
Spogli, L.
Alfonsi, L.
Romano, V.
Ning, B.
Li, G.
Jarvis, M.J.
Danskin, D.W.
Spanswick, E.
Donovan, E.
Terkildsen, M.
An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite
author_facet Prikryl, P.
Zhang, Y.
Ebihara, Y.
Ghoddousi-Fard, R.
Jayachandran, P.T.
Kinrade, J.
Mitchell, C.N.
Weatherwax, A.T.
Bust, G.
Cilliers, P.J.
Spogli, L.
Alfonsi, L.
Romano, V.
Ning, B.
Li, G.
Jarvis, M.J.
Danskin, D.W.
Spanswick, E.
Donovan, E.
Terkildsen, M.
author_sort Prikryl, P.
title An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite
title_short An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite
title_full An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite
title_fullStr An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite
title_full_unstemmed An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite
title_sort interhemispheric comparison of gps phase scintillation with auroral emission observed at the south pole and from the dmsp satellite
publishDate 2013
url https://researchportal.bath.ac.uk/en/publications/ad632c4c-73e0-476d-9f83-ebcf07d99e5c
https://doi.org/10.4401/ag-6227
https://purehost.bath.ac.uk/ws/files/11999612/6227_12576_1_PB.pdf
http://www.scopus.com/inward/record.url?scp=84879044131&partnerID=8YFLogxK
http://www.annalsofgeophysics.eu/index.php/annals/article/view/6227
geographic Arctic
Baffin Island
Canada
South Pole
geographic_facet Arctic
Baffin Island
Canada
South Pole
genre Antarc*
Antarctica
Arctic
aurora australis
Baffin Island
Baffin
Canadian High Arctic Ionospheric Network
South pole
South pole
genre_facet Antarc*
Antarctica
Arctic
aurora australis
Baffin Island
Baffin
Canadian High Arctic Ionospheric Network
South pole
South pole
op_source Prikryl , P , Zhang , Y , Ebihara , Y , Ghoddousi-Fard , R , Jayachandran , P T , Kinrade , J , Mitchell , C N , Weatherwax , A T , Bust , G , Cilliers , P J , Spogli , L , Alfonsi , L , Romano , V , Ning , B , Li , G , Jarvis , M J , Danskin , D W , Spanswick , E , Donovan , E & Terkildsen , M 2013 , ' An interhemispheric comparison of GPS phase scintillation with auroral emission observed at the South Pole and from the DMSP satellite ' , Annals of Geophysics , vol. 56 , no. 2 , pp. R0216 . https://doi.org/10.4401/ag-6227
op_relation https://researchportal.bath.ac.uk/en/publications/ad632c4c-73e0-476d-9f83-ebcf07d99e5c
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.4401/ag-6227
container_title Annals of Geophysics
container_volume 56
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