DocumentCode
1468052
Title
An algorithm for estimating field-aligned currents from single spacecraft magnetic field measurements: a diagnostic tool applied to Freja satellite data
Author
Lühr, Hermann ; Warnecke, Jörg F. ; Rother, Martin K A
Volume
34
Issue
6
fYear
1996
fDate
11/1/1996 12:00:00 AM
Firstpage
1369
Lastpage
1376
Abstract
Introduces an algorithm which allows under certain assumptions to estimate the current density distribution along the track from single spacecraft magnetic field measurements. The assumptions are chosen that they meet at least partly the conditions encountered by the Freja satellite on its northernmost orbital segment, namely that all currents are field-aligned, ionospheric currents do not contribute significantly to the magnetic field measurements, and the velocity component perpendicular to the field direction is large (>5 km/s). Problems arise in the case of moving or temporally varying current systems. In those cases additional data like ground-based observations are needed to resolve the spatio-temporal ambiguity. With the help of simulated data the authors can show that for most of the encountered stationary current geometries the estimates fall into an uncertainty band of ±20%. Current density estimates are a local quantity with a spatial resolution of order 1 km. They are thus very suitable for use in studying the fine structure of auroral plasma processes
Keywords
artificial satellites; atmospheric techniques; ionosphere; ionospheric techniques; FAC; Freja; algorithm; artificial satellite method; auroral plasma; electric current; electric current density distribution; field-aligned current; fine structure; ionosphere; magnetic field measurements; measurement technique; single spacecraft observation; spatio-temporal ambiguity; temporally varying current; Current density; Current distribution; Current measurement; Density measurement; Extraterrestrial measurements; Magnetic field measurement; Meteorology; Satellites; Space vehicles; Spatial resolution;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.544560
Filename
544560
Link To Document