DocumentCode :
1376103
Title :
EXOS-D (AKEBONO) very low frequency plasma wave instruments (VLF)
Author :
Hashimoto, Kozo ; Nagano, Isamu ; Yamamoto, Masayuki ; Okada, Toshimi ; Kimura, Iwane ; Matsumoto, Hiroshi ; Oki, Hidetaka
Author_Institution :
Radio Atmos. Sci. Center, Kyoto Univ., Japan
Volume :
35
Issue :
2
fYear :
1997
fDate :
3/1/1997 12:00:00 AM
Firstpage :
278
Lastpage :
286
Abstract :
The Akebono (EXOS-D) satellite has been successfully observing the Earth´s magnetosphere since it was launched on February 21, 1989. The objectives of VLF instruments on board the satellite were to investigate the behavior of plasma waves associated with accelerated auroral particles, wave-particle interaction mechanisms, and propagation characteristics of whistler-mode waves in the magnetosphere. The instruments measured not only the dynamic spectra of VLF waves up to 15 kHz by a wideband receiver, but also their absolute field intensities, wave normal vectors, and Poynting vectors. Two electric and three magnetic components with a bandwidth of about 50 Hz up to 12.5 kHz are sent to measure the wave normal vectors and Poynting vectors. The antenna impedance is measured to determine the correct absolute electric field intensities. The instruments have successfully measured the wave spectra, the wave normal vectors. Poynting vectors, the precise wave intensities, the antenna impedance, etc. The present paper describes the unique features of the instruments, especially the Poynting flux analyzers in more detail. Obtained scientific results are also reviewed
Keywords :
artificial satellites; atmospheric measuring apparatus; atmospheric techniques; magnetosphere; plasma diagnostics; plasma waves; AKEBONO; EXOS-D; Poynting vector; VLF; apparatus; equipment; intensity; magnetosphere; measurement technique; plasma wave instrument; radiowave sounding; very low frequency; wave normal vector; wave-particle interaction mechanism; whistler-mode wave; Antenna measurements; Earth; Electric variables measurement; Frequency; Impedance; Instruments; Magnetic field measurement; Magnetosphere; Plasma waves; Satellites;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/36.563267
Filename :
563267
Link To Document :
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