Ion-dispersion and rapid electron fluctuations in the cusp: a case study

We present results from co-ordinated measurements with the low altitude REIMEI satellite and the ESR (EISCAT Svalbard Radar), together with other ground-based instruments carried out in February 2006. The results mainly relate to the dayside cusp where clear signatures of so-called ion-dispersio...

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Main Authors: J. Lunde, S. C. Buchert, Y. Ogawa, M. Hirahara, K. Seki, Y. Ebihara, T. Sakanoi, K. Asamura, M. Okada, T. Raita, I. Häggström
Format: Article
Language:English
Published: Copernicus Publications 2008-08-01
Series:Annales Geophysicae
Online Access:https://www.ann-geophys.net/26/2485/2008/angeo-26-2485-2008.pdf
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spelling doaj-695a36fd8cbe4ec18d55391bb2bc9a412020-11-25T00:48:37ZengCopernicus PublicationsAnnales Geophysicae0992-76891432-05762008-08-01262485250210.5194/angeo-26-2485-2008Ion-dispersion and rapid electron fluctuations in the cusp: a case studyJ. Lunde0S. C. Buchert1Y. Ogawa2M. Hirahara3K. Seki4Y. Ebihara5T. Sakanoi6K. Asamura7M. Okada8T. Raita9I. Häggström10Department of Physics and Technology, University of Tromsø, NorwaySwedish Institute of Space Physics, University of Uppsala, SwedenNational Institute of Polar Research (NIPR), Tokyo, JapanDepartment of Earth and Planetary Science, University of Tokyo, JapanSTEL, Nagoya University, JapanIAR, Nagoya University, JapanPPARC, Tohoku University, JapanISAS/JAXA, Sagamihara, JapanNational Institute of Polar Research (NIPR), Tokyo, JapanSodankylä Geophysical Observatory, University of Oulu, FinlandEISCAT Scientific Association, Kiruna, SwedenWe present results from co-ordinated measurements with the low altitude REIMEI satellite and the ESR (EISCAT Svalbard Radar), together with other ground-based instruments carried out in February 2006. The results mainly relate to the dayside cusp where clear signatures of so-called ion-dispersion are seen in the satellite data. The cusp ion-dispersion is important for helping to understand the temporal and spatial structure of magnetopause reconnection. Whenever a satellite crosses boundaries of flux tubes or convection cells, cusp structures such as ion-dispersion will always be encountered. In our case we observed 3 distinct steps in the ion energy, but it includes at least 2 more steps as well, which we interpret as temporal features in relation to pulsed reconnection at the magnetopause. In addition, fast variations of the electron flux and energy occurring during these events have been studied in detail. The variations of the electron population, if interpreted as structures crossed by the REIMEI satellite, would map near the magnetopause to similar features as observed previously with the Cluster satellites. These were explained as Alfvén waves originating from an X-line of magnetic reconnection.https://www.ann-geophys.net/26/2485/2008/angeo-26-2485-2008.pdf
collection DOAJ
language English
format Article
sources DOAJ
author J. Lunde
S. C. Buchert
Y. Ogawa
M. Hirahara
K. Seki
Y. Ebihara
T. Sakanoi
K. Asamura
M. Okada
T. Raita
I. Häggström
spellingShingle J. Lunde
S. C. Buchert
Y. Ogawa
M. Hirahara
K. Seki
Y. Ebihara
T. Sakanoi
K. Asamura
M. Okada
T. Raita
I. Häggström
Ion-dispersion and rapid electron fluctuations in the cusp: a case study
Annales Geophysicae
author_facet J. Lunde
S. C. Buchert
Y. Ogawa
M. Hirahara
K. Seki
Y. Ebihara
T. Sakanoi
K. Asamura
M. Okada
T. Raita
I. Häggström
author_sort J. Lunde
title Ion-dispersion and rapid electron fluctuations in the cusp: a case study
title_short Ion-dispersion and rapid electron fluctuations in the cusp: a case study
title_full Ion-dispersion and rapid electron fluctuations in the cusp: a case study
title_fullStr Ion-dispersion and rapid electron fluctuations in the cusp: a case study
title_full_unstemmed Ion-dispersion and rapid electron fluctuations in the cusp: a case study
title_sort ion-dispersion and rapid electron fluctuations in the cusp: a case study
publisher Copernicus Publications
series Annales Geophysicae
issn 0992-7689
1432-0576
publishDate 2008-08-01
description We present results from co-ordinated measurements with the low altitude REIMEI satellite and the ESR (EISCAT Svalbard Radar), together with other ground-based instruments carried out in February 2006. The results mainly relate to the dayside cusp where clear signatures of so-called ion-dispersion are seen in the satellite data. The cusp ion-dispersion is important for helping to understand the temporal and spatial structure of magnetopause reconnection. Whenever a satellite crosses boundaries of flux tubes or convection cells, cusp structures such as ion-dispersion will always be encountered. In our case we observed 3 distinct steps in the ion energy, but it includes at least 2 more steps as well, which we interpret as temporal features in relation to pulsed reconnection at the magnetopause. In addition, fast variations of the electron flux and energy occurring during these events have been studied in detail. The variations of the electron population, if interpreted as structures crossed by the REIMEI satellite, would map near the magnetopause to similar features as observed previously with the Cluster satellites. These were explained as Alfvén waves originating from an X-line of magnetic reconnection.
url https://www.ann-geophys.net/26/2485/2008/angeo-26-2485-2008.pdf
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