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A new solar wind-driven global dynamic plasmapause model: 1. Database and statistics

  • Xiao Xin Zhang
  • , Fei He
  • , Rui Lin Lin
  • , Mei Ching Fok
  • , Roxanne M. Katus
  • , Michael W. Liemohn
  • , Dennis L. Gallagher
  • , Shinya Nakano
  • China Meteorological Administration
  • Chinese Academy of Sciences
  • CAS - National Space Science Center
  • NASA Goddard Space Flight Center
  • Eastern Michigan University
  • University of Michigan, Ann Arbor
  • NASA Marshall Space Flight Center
  • Research Organization of Information and Systems, The Institute of Statistical Mathematics

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

A large database, possibly the largest plasmapause location database, with 49,119 plasmapause crossing events from the in situ observations and 3957 plasmapause profiles (corresponding to 48,899 plasmapause locations in 1 h magnetic local time (MLT) intervals) from optical remote sensing from 1977 to 2015 by 18 satellites is compiled. The responses of the global plasmapause to solar wind and geomagnetic changes and the diurnal, seasonal, solar cycle variations of the plasmapause are investigated based on this database. It is found that the plasmapause shrinks toward the Earth globally and a clear bulge appears in the afternoon to premidnight MLT sector as the solar wind or geomagnetic conditions change from quiet to disturbed. The bulge is clearer during storm times or southward interplanetary magnetic field. The diurnal variations of the plasmapause are most probably the result of the difference between the magnetic dipole tilt and the Earth's spin axis. The seasonal variations of the plasmapause are characterized by equinox valleys and solstice peaks. It is also found that the plasmapause approaches the Earth during high solar activity and expands outward during low solar activity. This database will help us study and understand the evolution properties of the plasmapause shape and the interaction processes of the plasmasphere, the ring current, and the radiation belts in the magnetosphere.

Original languageEnglish
Pages (from-to)7153-7171
Number of pages19
JournalJournal of Geophysical Research: Space Physics
Volume122
Issue number7
DOIs
StatePublished - Jul 2017
Externally publishedYes

Keywords

  • database
  • geomagnetic activity
  • plasmapause
  • plasmasphere
  • solar activity
  • statistics

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