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Intense energetic electron flux enhancements in Mercury's magnetosphere: An integrated view with high‐resolution observations from MESSENGER

The MErcury Surface, Space ENvironment, GEochemistry, and Ranging (MESSENGER) mission to Mercury has provided a wealth of new data about energetic particle phenomena. With observations from MESSENGER's Energetic Particle Spectrometer, as well as data arising from energetic electrons recorded by...

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Autores principales: Baker, Daniel N., Dewey, Ryan M., Lawrence, David J., Goldsten, John O., Peplowski, Patrick N., Korth, Haje, Slavin, James A., Krimigis, Stamatios M., Anderson, Brian J., Ho, George C., McNutt, Ralph L., Raines, Jim M., Schriver, David, Solomon, Sean C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5076489/
https://www.ncbi.nlm.nih.gov/pubmed/27830111
http://dx.doi.org/10.1002/2015JA021778
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author Baker, Daniel N.
Dewey, Ryan M.
Lawrence, David J.
Goldsten, John O.
Peplowski, Patrick N.
Korth, Haje
Slavin, James A.
Krimigis, Stamatios M.
Anderson, Brian J.
Ho, George C.
McNutt, Ralph L.
Raines, Jim M.
Schriver, David
Solomon, Sean C.
author_facet Baker, Daniel N.
Dewey, Ryan M.
Lawrence, David J.
Goldsten, John O.
Peplowski, Patrick N.
Korth, Haje
Slavin, James A.
Krimigis, Stamatios M.
Anderson, Brian J.
Ho, George C.
McNutt, Ralph L.
Raines, Jim M.
Schriver, David
Solomon, Sean C.
author_sort Baker, Daniel N.
collection PubMed
description The MErcury Surface, Space ENvironment, GEochemistry, and Ranging (MESSENGER) mission to Mercury has provided a wealth of new data about energetic particle phenomena. With observations from MESSENGER's Energetic Particle Spectrometer, as well as data arising from energetic electrons recorded by the X‐Ray Spectrometer and Gamma‐Ray and Neutron Spectrometer (GRNS) instruments, recent work greatly extends our record of the acceleration, transport, and loss of energetic electrons at Mercury. The combined data sets include measurements from a few keV up to several hundred keV in electron kinetic energy and have permitted relatively good spatial and temporal resolution for many events. We focus here on the detailed nature of energetic electron bursts measured by the GRNS system, and we place these events in the context of solar wind and magnetospheric forcing at Mercury. Our examination of data at high temporal resolution (10 ms) during the period March 2013 through October 2014 supports strongly the view that energetic electrons are accelerated in the near‐tail region of Mercury's magnetosphere and are subsequently “injected” onto closed magnetic field lines on the planetary nightside. The electrons populate the plasma sheet and drift rapidly eastward toward the dawn and prenoon sectors, at times executing multiple complete drifts around the planet to form “quasi‐trapped” populations.
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spelling pubmed-50764892016-11-07 Intense energetic electron flux enhancements in Mercury's magnetosphere: An integrated view with high‐resolution observations from MESSENGER Baker, Daniel N. Dewey, Ryan M. Lawrence, David J. Goldsten, John O. Peplowski, Patrick N. Korth, Haje Slavin, James A. Krimigis, Stamatios M. Anderson, Brian J. Ho, George C. McNutt, Ralph L. Raines, Jim M. Schriver, David Solomon, Sean C. J Geophys Res Space Phys Research Articles The MErcury Surface, Space ENvironment, GEochemistry, and Ranging (MESSENGER) mission to Mercury has provided a wealth of new data about energetic particle phenomena. With observations from MESSENGER's Energetic Particle Spectrometer, as well as data arising from energetic electrons recorded by the X‐Ray Spectrometer and Gamma‐Ray and Neutron Spectrometer (GRNS) instruments, recent work greatly extends our record of the acceleration, transport, and loss of energetic electrons at Mercury. The combined data sets include measurements from a few keV up to several hundred keV in electron kinetic energy and have permitted relatively good spatial and temporal resolution for many events. We focus here on the detailed nature of energetic electron bursts measured by the GRNS system, and we place these events in the context of solar wind and magnetospheric forcing at Mercury. Our examination of data at high temporal resolution (10 ms) during the period March 2013 through October 2014 supports strongly the view that energetic electrons are accelerated in the near‐tail region of Mercury's magnetosphere and are subsequently “injected” onto closed magnetic field lines on the planetary nightside. The electrons populate the plasma sheet and drift rapidly eastward toward the dawn and prenoon sectors, at times executing multiple complete drifts around the planet to form “quasi‐trapped” populations. John Wiley and Sons Inc. 2016-03-18 2016-03 /pmc/articles/PMC5076489/ /pubmed/27830111 http://dx.doi.org/10.1002/2015JA021778 Text en ©2016. The Authors. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs (http://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Baker, Daniel N.
Dewey, Ryan M.
Lawrence, David J.
Goldsten, John O.
Peplowski, Patrick N.
Korth, Haje
Slavin, James A.
Krimigis, Stamatios M.
Anderson, Brian J.
Ho, George C.
McNutt, Ralph L.
Raines, Jim M.
Schriver, David
Solomon, Sean C.
Intense energetic electron flux enhancements in Mercury's magnetosphere: An integrated view with high‐resolution observations from MESSENGER
title Intense energetic electron flux enhancements in Mercury's magnetosphere: An integrated view with high‐resolution observations from MESSENGER
title_full Intense energetic electron flux enhancements in Mercury's magnetosphere: An integrated view with high‐resolution observations from MESSENGER
title_fullStr Intense energetic electron flux enhancements in Mercury's magnetosphere: An integrated view with high‐resolution observations from MESSENGER
title_full_unstemmed Intense energetic electron flux enhancements in Mercury's magnetosphere: An integrated view with high‐resolution observations from MESSENGER
title_short Intense energetic electron flux enhancements in Mercury's magnetosphere: An integrated view with high‐resolution observations from MESSENGER
title_sort intense energetic electron flux enhancements in mercury's magnetosphere: an integrated view with high‐resolution observations from messenger
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5076489/
https://www.ncbi.nlm.nih.gov/pubmed/27830111
http://dx.doi.org/10.1002/2015JA021778
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