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Quantifying the Size and Duration of a Microburst‐Producing Chorus Region on 5 December 2017

Microbursts are impulsive (<1 s) injections of electrons into the atmosphere, thought to be caused by nonlinear scattering by chorus waves. Although attempts have been made to quantify their contribution to outer belt electron loss, the uncertainty in the overall size and duration of the microbur...

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Autores principales: Elliott, S. S., Breneman, A. W., Colpitts, C., Pettit, J. M., Cattell, C. A., Halford, A. J., Shumko, M., Sample, J., Johnson, A. T., Miyoshi, Y., Kasahara, Y., Cully, C. M., Nakamura, S., Mitani, T., Hori, T., Shinohara, I., Shiokawa, K., Matsuda, S., Connors, M., Ozaki, M., Manninen, J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9540649/
https://www.ncbi.nlm.nih.gov/pubmed/36247517
http://dx.doi.org/10.1029/2022GL099655
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author Elliott, S. S.
Breneman, A. W.
Colpitts, C.
Pettit, J. M.
Cattell, C. A.
Halford, A. J.
Shumko, M.
Sample, J.
Johnson, A. T.
Miyoshi, Y.
Kasahara, Y.
Cully, C. M.
Nakamura, S.
Mitani, T.
Hori, T.
Shinohara, I.
Shiokawa, K.
Matsuda, S.
Connors, M.
Ozaki, M.
Manninen, J.
author_facet Elliott, S. S.
Breneman, A. W.
Colpitts, C.
Pettit, J. M.
Cattell, C. A.
Halford, A. J.
Shumko, M.
Sample, J.
Johnson, A. T.
Miyoshi, Y.
Kasahara, Y.
Cully, C. M.
Nakamura, S.
Mitani, T.
Hori, T.
Shinohara, I.
Shiokawa, K.
Matsuda, S.
Connors, M.
Ozaki, M.
Manninen, J.
author_sort Elliott, S. S.
collection PubMed
description Microbursts are impulsive (<1 s) injections of electrons into the atmosphere, thought to be caused by nonlinear scattering by chorus waves. Although attempts have been made to quantify their contribution to outer belt electron loss, the uncertainty in the overall size and duration of the microburst region is typically large, so that their contribution to outer belt loss is uncertain. We combine datasets that measure chorus waves (Van Allen Probes [RBSP], Arase, ground‐based VLF stations) and microburst (>30 keV) precipitation (FIREBIRD II and AC6 CubeSats, POES) to determine the size of the microburst‐producing chorus source region beginning on 5 December 2017. We estimate that the long‐lasting (∼30 hr) microburst‐producing chorus region extends from 4 to 8 [Formula: see text] MLT and 2–5 [Formula: see text] L. We conclude that microbursts likely represent a major loss source of outer radiation belt electrons for this event.
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spelling pubmed-95406492022-10-14 Quantifying the Size and Duration of a Microburst‐Producing Chorus Region on 5 December 2017 Elliott, S. S. Breneman, A. W. Colpitts, C. Pettit, J. M. Cattell, C. A. Halford, A. J. Shumko, M. Sample, J. Johnson, A. T. Miyoshi, Y. Kasahara, Y. Cully, C. M. Nakamura, S. Mitani, T. Hori, T. Shinohara, I. Shiokawa, K. Matsuda, S. Connors, M. Ozaki, M. Manninen, J. Geophys Res Lett Research Letter Microbursts are impulsive (<1 s) injections of electrons into the atmosphere, thought to be caused by nonlinear scattering by chorus waves. Although attempts have been made to quantify their contribution to outer belt electron loss, the uncertainty in the overall size and duration of the microburst region is typically large, so that their contribution to outer belt loss is uncertain. We combine datasets that measure chorus waves (Van Allen Probes [RBSP], Arase, ground‐based VLF stations) and microburst (>30 keV) precipitation (FIREBIRD II and AC6 CubeSats, POES) to determine the size of the microburst‐producing chorus source region beginning on 5 December 2017. We estimate that the long‐lasting (∼30 hr) microburst‐producing chorus region extends from 4 to 8 [Formula: see text] MLT and 2–5 [Formula: see text] L. We conclude that microbursts likely represent a major loss source of outer radiation belt electrons for this event. John Wiley and Sons Inc. 2022-08-15 2022-08-16 /pmc/articles/PMC9540649/ /pubmed/36247517 http://dx.doi.org/10.1029/2022GL099655 Text en © 2022. The Authors. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://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 Letter
Elliott, S. S.
Breneman, A. W.
Colpitts, C.
Pettit, J. M.
Cattell, C. A.
Halford, A. J.
Shumko, M.
Sample, J.
Johnson, A. T.
Miyoshi, Y.
Kasahara, Y.
Cully, C. M.
Nakamura, S.
Mitani, T.
Hori, T.
Shinohara, I.
Shiokawa, K.
Matsuda, S.
Connors, M.
Ozaki, M.
Manninen, J.
Quantifying the Size and Duration of a Microburst‐Producing Chorus Region on 5 December 2017
title Quantifying the Size and Duration of a Microburst‐Producing Chorus Region on 5 December 2017
title_full Quantifying the Size and Duration of a Microburst‐Producing Chorus Region on 5 December 2017
title_fullStr Quantifying the Size and Duration of a Microburst‐Producing Chorus Region on 5 December 2017
title_full_unstemmed Quantifying the Size and Duration of a Microburst‐Producing Chorus Region on 5 December 2017
title_short Quantifying the Size and Duration of a Microburst‐Producing Chorus Region on 5 December 2017
title_sort quantifying the size and duration of a microburst‐producing chorus region on 5 december 2017
topic Research Letter
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9540649/
https://www.ncbi.nlm.nih.gov/pubmed/36247517
http://dx.doi.org/10.1029/2022GL099655
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