On some features characterizing the plasmasphere–magnetosphere–ionosphere system during the geomagnetic storm of 27 May 2017

被引:0
|
作者
Michael Pezzopane
Afredo Del Corpo
Mirko Piersanti
Claudio Cesaroni
Alessio Pignalberi
Simone Di Matteo
Luca Spogli
Massimo Vellante
Balazs Heilig
机构
[1] Istituto Nazionale di Geofisica e Vulcanologia,Department of Physical and Chemical Sciences
[2] University of L’Aquila,National Institute of Nuclear Physics
[3] University of “Tor Vergata”,undefined
[4] SpacEarth Technology,undefined
[5] Mining and Geological Survey of Hungary,undefined
来源
Earth, Planets and Space | / 71卷
关键词
Geomagnetic storm; Magnetopause motion; Magnetopause crossing; Plasmasphere dynamics; Geomagnetic field line resonances; Ionospheric currents; IRI UP method; Total electron content;
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents how the magnetosphere–plasmasphere–ionosphere system was affected as a whole during the geomagnetic storm peaking on 27 May 2017. The interplanetary conditions, the magnetospheric response in terms of the magnetopause motion, and the ionospheric current flow pattern were investigated using data, respectively, from the WIND spacecraft, from GOES15, GOES13, THEMIS E, THEMIS D and THEMIS A satellites and from the INTERMAGNET magnetometer array. The main objective of the work is to investigate the plasmaspheric dynamics under disturbed conditions and its possible relation to the ionospheric one; to reach this goal, the equatorial plasma mass densities derived from geomagnetic field line resonance observations at the European quasi-Meridional Magnetometer Array (EMMA) and total electron content values obtained through three GPS receivers close to EMMA were jointly considered. Despite the complexity of physical mechanisms behind them, we found a similarity between the ionospheric and plasmaspheric characteristic recovery times. Specifically, the ionospheric characteristic time turned out to be ~ 1.5 days, ~ 2 days and ~ 3.1 days, respectively, at L ~ 3, L ~ 4 and L ~ 5, while the plasmaspheric one, for similar L values, ranged from ~ 1 day to more than 4 days.[graphic not available: see fulltext]
引用
收藏
相关论文
共 12 条
  • [1] On some features characterizing the plasmasphere-magnetosphere-ionosphere system during the geomagnetic storm of 27 May 2017
    Pezzopane, Michael
    Del Corpo, Afredo
    Piersanti, Mirko
    Cesaroni, Claudio
    Pignalberi, Alessio
    Di Matteo, Simone
    Spogli, Luca
    Vellante, Massimo
    Heilig, Balazs
    EARTH PLANETS AND SPACE, 2019, 71 (1):
  • [2] On the Magnetosphere-Ionosphere Coupling During the May 2021 Geomagnetic Storm
    Piersanti, M.
    Del Moro, D.
    Parmentier, A.
    Martucci, M.
    Palma, F.
    Sotgiu, A.
    Plainaki, C.
    D'Angelo, G.
    Berrilli, F.
    Recchiuti, D.
    Papini, E.
    Giovannelli, L.
    Napoletano, G.
    Iuppa, R.
    Diego, P.
    Cicone, A.
    Merge, M.
    De Donato, C.
    De Santis, C.
    Sparvoli, R.
    Ubertini, P.
    Battiston, R.
    Picozza, P.
    SPACE WEATHER-THE INTERNATIONAL JOURNAL OF RESEARCH AND APPLICATIONS, 2022, 20 (06):
  • [3] Analysis of the ionosphere/plasmasphere electron content variability during strong geomagnetic storm
    Cherniak, Iu. V.
    Zakharenkova, I. E.
    Dzubanov, D.
    Krankowski, A.
    ADVANCES IN SPACE RESEARCH, 2014, 54 (04) : 586 - 594
  • [4] Multimodel Study of the Influence of Atmospheric Waves from a Tropospheric Source on the Ionosphere During a Geomagnetic Storm on May 27-29, 2017
    Kurdyaeva, Y. A.
    Bessarab, F. S.
    Borchevkina, O. P.
    Klimenko, M. V.
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY B, 2024, 18 (03) : 852 - 862
  • [5] Space Weather Effects Observed in the Northern Hemisphere during November 2021 Geomagnetic Storm: The Impacts on Plasmasphere, Ionosphere and Thermosphere Systems
    Regi, Mauro
    Perrone, Loredana
    Del Corpo, Alfredo
    Spogli, Luca
    Sabbagh, Dario
    Cesaroni, Claudio
    Alfonsi, Laura
    Bagiacchi, Paolo
    Cafarella, Lili
    Carnevale, Giuseppina
    De Lauretis, Marcello
    Di Mauro, Domenico
    Di Pietro, Pierluigi
    Francia, Patrizia
    Heilig, Balazs
    Lepidi, Stefania
    Marcocci, Carlo
    Masci, Fabrizio
    Nardi, Adriano
    Piscini, Alessandro
    Redaelli, Gianluca
    Romano, Vincenzo
    Sciacca, Umberto
    Scotto, Carlo
    REMOTE SENSING, 2022, 14 (22)
  • [6] First Detection of Midlatitude Plasma Bubble by SuperDARN During a Geomagnetic Storm on May 27 and 28, 2017
    Sori, Takuya
    Shinbori, Atsuki
    Otsuka, Yuichi
    Nishioka, Michi
    Perwitasari, Septi
    Nishitani, Nozomu
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2023, 128 (04)
  • [7] Temporal and Spatial Variations of Total Electron Content Enhancements During a Geomagnetic Storm on 27 and 28 September 2017
    Shinbori, Atsuki
    Otsuka, Yuichi
    Sori, Takuya
    Tsugawa, Takuya
    Nishioka, Michi
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2020, 125 (07)
  • [8] Importance of lower atmospheric forcing and magnetosphere-ionosphere coupling in simulating neutral density during the February 2016 geomagnetic storm
    Maute, Astrid
    Lu, Gang
    Knipp, Delores J.
    Anderson, Brian J.
    Vines, Sarah K.
    FRONTIERS IN ASTRONOMY AND SPACE SCIENCES, 2022, 9
  • [9] Geomagnetic Phenomena Observed by a Temporal Station at Ulu-Slim, Malaysia during the Storm of March 27, 2017
    Arafa-Hamed, T.
    Khalil, A.
    Nawawi, M.
    Hassan, H.
    Arifin, M. H.
    SAINS MALAYSIANA, 2019, 48 (11): : 2427 - 2435
  • [10] Multi-instrument observations of plasma features in the Arctic ionosphere during the main phase of a geomagnetic storm in December 2006
    Wu, Ye-wen
    Liu, Rui-yuan
    Zhang, Bei-chen
    Wu, Zhen-sen
    Hu, Hong-qiao
    Zhang, Shun-rong
    Zhang, Qing-he
    Liu, Jun-ming
    Honary, F.
    JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2013, 105 : 358 - 366