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A comparison of wave mode identification techniques

  • S. N. Walker
  • , F. Sahraoui
  • , M. A. Balikhin
  • , G. Belmont
  • , J. L. Pinçon
  • , L. Rezeau
  • , H. Alleyne
  • , N. Cornilleau-Wehrlin
  • , M. André
  • The University of Sheffield
  • Ctr. d'Etude Environ. Terrestre
  • CNRS
  • Universite de Pierre Marie Curie
  • Swedish Institute of Space Physics

Research output: Contribution to journalArticlepeer-review

Abstract

The four point measurements available from the Cluster mission enable spatiotemporal effects in data sets to be resolved. One application of these multipoint measurements is the determination of the wave vectors and hence the identification of wave modes that exist within the plasma. Prior to multi-satellite missions, wave identification techniques were based upon the interpretation of observational data using theoretically defined relations. However, such techniques are limited by the quality of the data and the type of plasma model employed. With multipoint measurements, wave modes can be identified and their wave directions determined purely from the available observations. This paper takes two such methods, a phase differencing technique and k-filtering and compares their results. It is shown that both methods can resolve the k vector for the dominant mirror mode present in the data. The phase differencing method shows that the nature of the wave environment is constantly changing and as such both methods result in an average picture of the wave environment in the period analysed. The k-filtering method is able to identify other modes that are present.

Original languageEnglish
Pages (from-to)3021-3032
Number of pages12
JournalAnnales Geophysicae
Volume22
Issue number8
DOIs
Publication statusPublished - 1 Jan 2004
Externally publishedYes

Keywords

  • Magnetospheric physics (magnetosheath)
  • Space plasma physics (waves and instabilities; instruments and techniques)

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