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Wave Phenomena and Beam‐Plasma Interactions at the Magnetopause Reconnection Region

This paper reports on Magnetospheric Multiscale observations of whistler mode chorus and higher‐frequency electrostatic waves near and within a reconnection diffusion region on 23 November 2016. The diffusion region is bounded by crescent‐shaped electron distributions and associated dissipation just...

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Autores principales: Burch, J. L., Webster, J. M., Genestreti, K. J., Torbert, R. B., Giles, B. L., Fuselier, S. A., Dorelli, J. C., Rager, A. C., Phan, T. D., Allen, R. C., Chen, L.‐J., Wang, S., Le Contel, O., Russell, C. T., Strangeway, R. J., Ergun, R. E., Jaynes, A. N., Lindqvist, P.‐A., Graham, D. B., Wilder, F. D., Hwang, K.‐J., Goldstein, J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5993346/
https://www.ncbi.nlm.nih.gov/pubmed/29938153
http://dx.doi.org/10.1002/2017JA024789
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author Burch, J. L.
Webster, J. M.
Genestreti, K. J.
Torbert, R. B.
Giles, B. L.
Fuselier, S. A.
Dorelli, J. C.
Rager, A. C.
Phan, T. D.
Allen, R. C.
Chen, L.‐J.
Wang, S.
Le Contel, O.
Russell, C. T.
Strangeway, R. J.
Ergun, R. E.
Jaynes, A. N.
Lindqvist, P.‐A.
Graham, D. B.
Wilder, F. D.
Hwang, K.‐J.
Goldstein, J.
author_facet Burch, J. L.
Webster, J. M.
Genestreti, K. J.
Torbert, R. B.
Giles, B. L.
Fuselier, S. A.
Dorelli, J. C.
Rager, A. C.
Phan, T. D.
Allen, R. C.
Chen, L.‐J.
Wang, S.
Le Contel, O.
Russell, C. T.
Strangeway, R. J.
Ergun, R. E.
Jaynes, A. N.
Lindqvist, P.‐A.
Graham, D. B.
Wilder, F. D.
Hwang, K.‐J.
Goldstein, J.
author_sort Burch, J. L.
collection PubMed
description This paper reports on Magnetospheric Multiscale observations of whistler mode chorus and higher‐frequency electrostatic waves near and within a reconnection diffusion region on 23 November 2016. The diffusion region is bounded by crescent‐shaped electron distributions and associated dissipation just upstream of the X‐line and by magnetic field‐aligned currents and electric fields leading to dissipation near the electron stagnation point. Measurements were made southward of the X‐line as determined by southward directed ion and electron jets. We show that electrostatic wave generation is due to magnetosheath electron beams formed by the electron jets as they interact with a cold background plasma and more energetic population of magnetospheric electrons. On the magnetosphere side of the X‐line the electron beams are accompanied by a strong perpendicular electron temperature anisotropy, which is shown to be the source of an observed rising‐tone whistler mode chorus event. We show that the apex of the chorus event and the onset of electrostatic waves coincide with the opening of magnetic field lines at the electron stagnation point.
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spelling pubmed-59933462018-06-20 Wave Phenomena and Beam‐Plasma Interactions at the Magnetopause Reconnection Region Burch, J. L. Webster, J. M. Genestreti, K. J. Torbert, R. B. Giles, B. L. Fuselier, S. A. Dorelli, J. C. Rager, A. C. Phan, T. D. Allen, R. C. Chen, L.‐J. Wang, S. Le Contel, O. Russell, C. T. Strangeway, R. J. Ergun, R. E. Jaynes, A. N. Lindqvist, P.‐A. Graham, D. B. Wilder, F. D. Hwang, K.‐J. Goldstein, J. J Geophys Res Space Phys Research Articles This paper reports on Magnetospheric Multiscale observations of whistler mode chorus and higher‐frequency electrostatic waves near and within a reconnection diffusion region on 23 November 2016. The diffusion region is bounded by crescent‐shaped electron distributions and associated dissipation just upstream of the X‐line and by magnetic field‐aligned currents and electric fields leading to dissipation near the electron stagnation point. Measurements were made southward of the X‐line as determined by southward directed ion and electron jets. We show that electrostatic wave generation is due to magnetosheath electron beams formed by the electron jets as they interact with a cold background plasma and more energetic population of magnetospheric electrons. On the magnetosphere side of the X‐line the electron beams are accompanied by a strong perpendicular electron temperature anisotropy, which is shown to be the source of an observed rising‐tone whistler mode chorus event. We show that the apex of the chorus event and the onset of electrostatic waves coincide with the opening of magnetic field lines at the electron stagnation point. John Wiley and Sons Inc. 2018-02-03 2018-02 /pmc/articles/PMC5993346/ /pubmed/29938153 http://dx.doi.org/10.1002/2017JA024789 Text en ©2018. 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
Burch, J. L.
Webster, J. M.
Genestreti, K. J.
Torbert, R. B.
Giles, B. L.
Fuselier, S. A.
Dorelli, J. C.
Rager, A. C.
Phan, T. D.
Allen, R. C.
Chen, L.‐J.
Wang, S.
Le Contel, O.
Russell, C. T.
Strangeway, R. J.
Ergun, R. E.
Jaynes, A. N.
Lindqvist, P.‐A.
Graham, D. B.
Wilder, F. D.
Hwang, K.‐J.
Goldstein, J.
Wave Phenomena and Beam‐Plasma Interactions at the Magnetopause Reconnection Region
title Wave Phenomena and Beam‐Plasma Interactions at the Magnetopause Reconnection Region
title_full Wave Phenomena and Beam‐Plasma Interactions at the Magnetopause Reconnection Region
title_fullStr Wave Phenomena and Beam‐Plasma Interactions at the Magnetopause Reconnection Region
title_full_unstemmed Wave Phenomena and Beam‐Plasma Interactions at the Magnetopause Reconnection Region
title_short Wave Phenomena and Beam‐Plasma Interactions at the Magnetopause Reconnection Region
title_sort wave phenomena and beam‐plasma interactions at the magnetopause reconnection region
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5993346/
https://www.ncbi.nlm.nih.gov/pubmed/29938153
http://dx.doi.org/10.1002/2017JA024789
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