In:
Journal of Geophysical Research: Space Physics, American Geophysical Union (AGU), Vol. 91, No. A4 ( 1986-04), p. 4302-4320
Abstract:
Relaxation sounders have proved to be successful in measuring the electron density in dilute space plasmas. The resonances excited at the characteristic frequencies of the medium depend very much on the local plasma. We present here methods to determine automatically, by a computer, the plasma frequency in the various regions encountered. In the solar wind and in the magnetosheath, only one strong, long‐lasting resonance appears close to the plasma frequency f pe , yielding directly the electron density. We use a pattern recognition method based on Sebestyen';s discrimination approach, and each identified resonance is given with a quality criterion. From one year of data there is no drift of the resonance features, and the method is used with a success rate of 95% as determined by manual means. In the magnetosphere various types of resonances are excited at the characteristic frequencies of the medium (cyclotron harmonic frequencies nf ce and maximum frequencies of the Bernstein';s modes f qn ). We compare the dispersion relation of electrostatic waves, which contains f ce and f pe as parameters, to the observed frequencies of the resonances. First f ce is extracted using the harmonicity of the nf ce resonances, and then the f qn series is compared to the dispersion relation for various values of f pe . In 93% of 250 cases the error for f pe is less than 10%. In the magnetotail where the resonances are closely spaced in frequency, the frequency resolution of the experiment does not allow us to use this method and we determine f pe by the enhancement of the resonances power.
Type of Medium:
Online Resource
ISSN:
0148-0227
DOI:
10.1029/JA091iA04p04302
Language:
English
Publisher:
American Geophysical Union (AGU)
Publication Date:
1986
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