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Energetic Electron Injection and Precipitation as Seen from RCM Bubble Simulation. / Сергеев, Виктор Андреевич; Yang, Jian; Sun, Weiqin; Шухтина, Мария Алексеевна.

Problems of Geocosmos—2022, Proceedings of the XIV Conference and School. ed. / A. Kosterov; E Lyskova; I. Mironova; S. Apatenkov; S. Baranov. Vol. XII Springer Proceedings in Earth and Environmental Sciences. ed. Cham : Springer Nature, 2023. p. 289-299.

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

Harvard

Сергеев, ВА, Yang, J, Sun, W & Шухтина, МА 2023, Energetic Electron Injection and Precipitation as Seen from RCM Bubble Simulation. in A Kosterov, E Lyskova, I Mironova, S Apatenkov & S Baranov (eds), Problems of Geocosmos—2022, Proceedings of the XIV Conference and School. Springer Proceedings in Earth and Environmental Sciences edn, vol. XII, Springer Nature, Cham, pp. 289-299, XIV школа-конференция с международным участием «Проблемы Геокосмоса — 2022», Санкт-Петербург, Russian Federation, 3/10/22. https://doi.org/10.1007/978-3-031-40728-4_21

APA

Сергеев, В. А., Yang, J., Sun, W., & Шухтина, М. А. (2023). Energetic Electron Injection and Precipitation as Seen from RCM Bubble Simulation. In A. Kosterov, E. Lyskova, I. Mironova, S. Apatenkov, & S. Baranov (Eds.), Problems of Geocosmos—2022, Proceedings of the XIV Conference and School (Springer Proceedings in Earth and Environmental Sciences ed., Vol. XII, pp. 289-299). Springer Nature. https://doi.org/10.1007/978-3-031-40728-4_21

Vancouver

Сергеев ВА, Yang J, Sun W, Шухтина МА. Energetic Electron Injection and Precipitation as Seen from RCM Bubble Simulation. In Kosterov A, Lyskova E, Mironova I, Apatenkov S, Baranov S, editors, Problems of Geocosmos—2022, Proceedings of the XIV Conference and School. Springer Proceedings in Earth and Environmental Sciences ed. Vol. XII. Cham: Springer Nature. 2023. p. 289-299 https://doi.org/10.1007/978-3-031-40728-4_21

Author

Сергеев, Виктор Андреевич ; Yang, Jian ; Sun, Weiqin ; Шухтина, Мария Алексеевна. / Energetic Electron Injection and Precipitation as Seen from RCM Bubble Simulation. Problems of Geocosmos—2022, Proceedings of the XIV Conference and School. editor / A. Kosterov ; E Lyskova ; I. Mironova ; S. Apatenkov ; S. Baranov. Vol. XII Springer Proceedings in Earth and Environmental Sciences. ed. Cham : Springer Nature, 2023. pp. 289-299

BibTeX

@inproceedings{3cbb50410b9f4aad80a14fe7d7a9cff6,
title = "Energetic Electron Injection and Precipitation as Seen from RCM Bubble Simulation",
abstract = "Although principal possibility to form the energetic electron (EE) injec-tions by transient fast flow bursts was demonstrated, details and quantitative aspects of injection process need to be further investigated based on advanced models. Here we use self-consistent RCM-I simulation initiated by the short-duration (5-min long) localized (~3 Re width) density depletion (evacuating 90% of flux tube content) at the tailward simulation boundary (~18 Re) to look on resulted dynamics of energetic electrons as they are accelerated, injected and then drift eastward in the magnetosphere and precipitate into the atmosphere. We demonstrate that, starting from ordinary plasma sheet population, 50–200 keV electron flux dramatically increases by betatron-like acceleration when the bubble head enter the inner magnetosphere at r < 8–10 Re, and finally reaches as high flux values as 105 (cm2 s sr keV)−1 forming an injected electron cloud. At this time, a sudden onset of EE precipitation develops in the conjugate ionosphere in a couple of minutes. Although simulation uses some approximations (like isotropic precipitation from drifting cloud) and describes an elementary act of injection, it is capable to reproduce basic known global features of precipitation dynamics and geometry including eastward drift along the auroral zone (with roughly 1 h drift period) and a crescent-shaped precipitation zone with minimal precipitation at dusk.",
keywords = "инжекции плазмы, высыпание энергичных электронов, магнитосфера",
author = "Сергеев, {Виктор Андреевич} and Jian Yang and Weiqin Sun and Шухтина, {Мария Алексеевна}",
year = "2023",
month = dec,
day = "2",
doi = "10.1007/978-3-031-40728-4_21",
language = "English",
isbn = "978-3-031-40730-7",
volume = "XII",
pages = "289--299",
editor = "A. Kosterov and E Lyskova and I. Mironova and S. Apatenkov and S. Baranov",
booktitle = "Problems of Geocosmos—2022, Proceedings of the XIV Conference and School",
publisher = "Springer Nature",
address = "Germany",
edition = "Springer Proceedings in Earth and Environmental Sciences",
note = "null ; Conference date: 03-10-2022 Through 07-10-2022",
url = "https://events.spbu.ru/events/geocosmos-2022",

}

RIS

TY - GEN

T1 - Energetic Electron Injection and Precipitation as Seen from RCM Bubble Simulation

AU - Сергеев, Виктор Андреевич

AU - Yang, Jian

AU - Sun, Weiqin

AU - Шухтина, Мария Алексеевна

N1 - Conference code: 14

PY - 2023/12/2

Y1 - 2023/12/2

N2 - Although principal possibility to form the energetic electron (EE) injec-tions by transient fast flow bursts was demonstrated, details and quantitative aspects of injection process need to be further investigated based on advanced models. Here we use self-consistent RCM-I simulation initiated by the short-duration (5-min long) localized (~3 Re width) density depletion (evacuating 90% of flux tube content) at the tailward simulation boundary (~18 Re) to look on resulted dynamics of energetic electrons as they are accelerated, injected and then drift eastward in the magnetosphere and precipitate into the atmosphere. We demonstrate that, starting from ordinary plasma sheet population, 50–200 keV electron flux dramatically increases by betatron-like acceleration when the bubble head enter the inner magnetosphere at r < 8–10 Re, and finally reaches as high flux values as 105 (cm2 s sr keV)−1 forming an injected electron cloud. At this time, a sudden onset of EE precipitation develops in the conjugate ionosphere in a couple of minutes. Although simulation uses some approximations (like isotropic precipitation from drifting cloud) and describes an elementary act of injection, it is capable to reproduce basic known global features of precipitation dynamics and geometry including eastward drift along the auroral zone (with roughly 1 h drift period) and a crescent-shaped precipitation zone with minimal precipitation at dusk.

AB - Although principal possibility to form the energetic electron (EE) injec-tions by transient fast flow bursts was demonstrated, details and quantitative aspects of injection process need to be further investigated based on advanced models. Here we use self-consistent RCM-I simulation initiated by the short-duration (5-min long) localized (~3 Re width) density depletion (evacuating 90% of flux tube content) at the tailward simulation boundary (~18 Re) to look on resulted dynamics of energetic electrons as they are accelerated, injected and then drift eastward in the magnetosphere and precipitate into the atmosphere. We demonstrate that, starting from ordinary plasma sheet population, 50–200 keV electron flux dramatically increases by betatron-like acceleration when the bubble head enter the inner magnetosphere at r < 8–10 Re, and finally reaches as high flux values as 105 (cm2 s sr keV)−1 forming an injected electron cloud. At this time, a sudden onset of EE precipitation develops in the conjugate ionosphere in a couple of minutes. Although simulation uses some approximations (like isotropic precipitation from drifting cloud) and describes an elementary act of injection, it is capable to reproduce basic known global features of precipitation dynamics and geometry including eastward drift along the auroral zone (with roughly 1 h drift period) and a crescent-shaped precipitation zone with minimal precipitation at dusk.

KW - инжекции плазмы

KW - высыпание энергичных электронов

KW - магнитосфера

UR - https://www.mendeley.com/catalogue/fd71a068-157f-337d-adb0-1502cfcacc56/

U2 - 10.1007/978-3-031-40728-4_21

DO - 10.1007/978-3-031-40728-4_21

M3 - Conference contribution

SN - 978-3-031-40730-7

SN - 978-3-031-40727-7

VL - XII

SP - 289

EP - 299

BT - Problems of Geocosmos—2022, Proceedings of the XIV Conference and School

A2 - Kosterov, A.

A2 - Lyskova, E

A2 - Mironova, I.

A2 - Apatenkov, S.

A2 - Baranov, S.

PB - Springer Nature

CY - Cham

Y2 - 3 October 2022 through 7 October 2022

ER -

ID: 114759695