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Geomagnetic conjugate observations of plasma‐sheet electrons by the FAST and THEMIS satellites
Author(s) -
Lee S.,
Shiokawa K.,
McFadden J. P.,
Seki K.
Publication year - 2013
Publication title -
journal of geophysical research: space physics
Language(s) - English
Resource type - Journals
eISSN - 2169-9402
pISSN - 2169-9380
DOI - 10.1029/2012ja017805
Subject(s) - electron , physics , conjunction (astronomy) , plasma sheet , spectral line , satellite , electron precipitation , atomic physics , range (aeronautics) , ionosphere , geomagnetic latitude , plasma , pitch angle , astrophysics , earth's magnetic field , computational physics , geophysics , magnetosphere , astronomy , magnetic field , nuclear physics , materials science , composite material , quantum mechanics
We investigate pitch‐angle distributions and spectral shapes of auroral electrons simultaneously observed during three conjunction events by the FAST satellite at altitudes of 2500–3500 km and by the THEMIS satellite in the plasma sheet at 7–13 R E . All three events were on the lower latitude of the auroral oval. Conjunction event 1 occurred at ~1914:45 UT on 10 April 2008. Electron spectra at energies of 0.1–3 keV are correlated well between the two satellites, while the precipitating electrons above 3 keV are missing at FAST. Event 2 occurred at 1255:26 UT on 26 April 2008. Electron spectra above 3 keV are correlated well between the two satellites. An additional broad spectral peak at energies of 0.1–0.5 keV was observed by FAST. Event 3 occurred at 0058:04 UT on 25 December 2008. Precipitating electrons of 0.5–5 keV obtained by FAST are correlated well with those of THEMIS‐C, while a monoenergetic peak at 0.1–0.2 keV was observed only by FAST. For the three conjunction events, we conclude that high‐energy precipitating auroral electrons observed by FAST directly come from the equatorial plasma sheet, while low‐energy precipitating electrons may come from middle altitudes as a result of acceleration by static potential differences. For missing high‐energy (>3 keV) electrons of event 1, we speculate that the pitch‐angle scattering by waves occurs only at a limited energy range.