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Magnetosphere response to the 2005 and 2006 extreme solar events as observed by the Cluster and Double Star spacecraft

  • Iannis S. Dandouras*
  • , Henri Rème
  • , Jinbin Cao
  • , Philippe Escoubet
  • *Corresponding author for this work
  • Institute de Recherche en Astrophysique et Planétologie
  • CNRS
  • CAS - National Space Science Center
  • ESA/ESTEC

Research output: Contribution to journalArticlepeer-review

Abstract

The four identical Cluster spacecraft, launched in 2000, orbit the Earth in a tetrahedral configuration and on a highly eccentric polar orbit (4-19.6 R E ). This allows the crossing of critical layers that develop as a result of the interaction between the solar wind and the Earth's magnetosphere. Since 2004 the Chinese Double Star TC-1 and TC-2 spacecraft, whose payload comprise also backup models of instruments developed by European scientists for Cluster, provided two additional points of measurement, on a larger scale: the Cluster and Double Star orbits are such that the spacecraft are almost in the same meridian, allowing conjugate studies. The Cluster and Double Star observations during the 2005 and 2006 extreme solar events are presented, showing uncommon plasma parameters values in the near-Earth solar wind and in the magnetosheath. These include solar wind velocities up to ∼900 km s -1 during an ICME shock arrival, accompanied by a sudden increase in the density by a factor of ∼5 and followed by an enrichment in He ++ in the secondary front of the ICME. In the magnetosheath ion density values as high as 130 cm -3 were observed, and the plasma flow velocity there reached values even higher than the typical solar wind velocity. These resulted in unusual dayside magnetosphere compression, detection of penetrating high-energy particles in the magnetotail, and ring current development following several successive injections of energetic particles in the inner magnetosphere, which "washed out" the previously formed nose-like ion structures.

Original languageEnglish
Pages (from-to)618-623
Number of pages6
JournalAdvances in Space Research
Volume43
Issue number4
DOIs
StatePublished - 16 Feb 2009
Externally publishedYes

Keywords

  • Energetic particles
  • Magnetosphere compression
  • Ring current

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