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Neutral Atom Imaging of the Solar Wind‐Magnetosphere‐Exosphere Interaction Near the Subsolar Magnetopause

Energetic neutral atoms (ENAs) created by charge‐exchange of ions with the Earth's hydrogen exosphere near the subsolar magnetopause yield information on the distribution of plasma in the outer magnetosphere and magnetosheath. ENA observations from the Interstellar Boundary Explorer (IBEX) are...

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Autores principales: Fuselier, S. A., Dayeh, M. A., Galli, A., Funsten, H. O., Schwadron, N. A., Petrinec, S. M., Trattner, K. J., McComas, D. J., Burch, J. L., Toledo‐Redondo, S., Szalay, J. R., Strangeway, R. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7757190/
https://www.ncbi.nlm.nih.gov/pubmed/33380756
http://dx.doi.org/10.1029/2020GL089362
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author Fuselier, S. A.
Dayeh, M. A.
Galli, A.
Funsten, H. O.
Schwadron, N. A.
Petrinec, S. M.
Trattner, K. J.
McComas, D. J.
Burch, J. L.
Toledo‐Redondo, S.
Szalay, J. R.
Strangeway, R. J.
author_facet Fuselier, S. A.
Dayeh, M. A.
Galli, A.
Funsten, H. O.
Schwadron, N. A.
Petrinec, S. M.
Trattner, K. J.
McComas, D. J.
Burch, J. L.
Toledo‐Redondo, S.
Szalay, J. R.
Strangeway, R. J.
author_sort Fuselier, S. A.
collection PubMed
description Energetic neutral atoms (ENAs) created by charge‐exchange of ions with the Earth's hydrogen exosphere near the subsolar magnetopause yield information on the distribution of plasma in the outer magnetosphere and magnetosheath. ENA observations from the Interstellar Boundary Explorer (IBEX) are used to image magnetosheath plasma and, for the first time, low‐energy magnetospheric plasma near the magnetopause. These images show that magnetosheath plasma is distributed fairly evenly near the subsolar magnetopause; however, low‐energy magnetospheric plasma is not distributed evenly in the outer magnetosphere. Simultaneous images and in situ observations from the Magnetospheric Multiscale (MMS) spacecraft from November 2015 (during the solar cycle declining phase) are used to derive the exospheric density. The ~11–17 cm(−3) density at 10 R(E) is similar to that obtained previously for solar minimum. Thus, these combined results indicate that the exospheric density 10 R(E) from the Earth may have a weak dependence on solar cycle.
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spelling pubmed-77571902020-12-28 Neutral Atom Imaging of the Solar Wind‐Magnetosphere‐Exosphere Interaction Near the Subsolar Magnetopause Fuselier, S. A. Dayeh, M. A. Galli, A. Funsten, H. O. Schwadron, N. A. Petrinec, S. M. Trattner, K. J. McComas, D. J. Burch, J. L. Toledo‐Redondo, S. Szalay, J. R. Strangeway, R. J. Geophys Res Lett Research Letters Energetic neutral atoms (ENAs) created by charge‐exchange of ions with the Earth's hydrogen exosphere near the subsolar magnetopause yield information on the distribution of plasma in the outer magnetosphere and magnetosheath. ENA observations from the Interstellar Boundary Explorer (IBEX) are used to image magnetosheath plasma and, for the first time, low‐energy magnetospheric plasma near the magnetopause. These images show that magnetosheath plasma is distributed fairly evenly near the subsolar magnetopause; however, low‐energy magnetospheric plasma is not distributed evenly in the outer magnetosphere. Simultaneous images and in situ observations from the Magnetospheric Multiscale (MMS) spacecraft from November 2015 (during the solar cycle declining phase) are used to derive the exospheric density. The ~11–17 cm(−3) density at 10 R(E) is similar to that obtained previously for solar minimum. Thus, these combined results indicate that the exospheric density 10 R(E) from the Earth may have a weak dependence on solar cycle. John Wiley and Sons Inc. 2020-10-05 2020-10-16 /pmc/articles/PMC7757190/ /pubmed/33380756 http://dx.doi.org/10.1029/2020GL089362 Text en ©2020. The Authors. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Letters
Fuselier, S. A.
Dayeh, M. A.
Galli, A.
Funsten, H. O.
Schwadron, N. A.
Petrinec, S. M.
Trattner, K. J.
McComas, D. J.
Burch, J. L.
Toledo‐Redondo, S.
Szalay, J. R.
Strangeway, R. J.
Neutral Atom Imaging of the Solar Wind‐Magnetosphere‐Exosphere Interaction Near the Subsolar Magnetopause
title Neutral Atom Imaging of the Solar Wind‐Magnetosphere‐Exosphere Interaction Near the Subsolar Magnetopause
title_full Neutral Atom Imaging of the Solar Wind‐Magnetosphere‐Exosphere Interaction Near the Subsolar Magnetopause
title_fullStr Neutral Atom Imaging of the Solar Wind‐Magnetosphere‐Exosphere Interaction Near the Subsolar Magnetopause
title_full_unstemmed Neutral Atom Imaging of the Solar Wind‐Magnetosphere‐Exosphere Interaction Near the Subsolar Magnetopause
title_short Neutral Atom Imaging of the Solar Wind‐Magnetosphere‐Exosphere Interaction Near the Subsolar Magnetopause
title_sort neutral atom imaging of the solar wind‐magnetosphere‐exosphere interaction near the subsolar magnetopause
topic Research Letters
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7757190/
https://www.ncbi.nlm.nih.gov/pubmed/33380756
http://dx.doi.org/10.1029/2020GL089362
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