NASA NTRS · 19810059602
Propagating substorm injection fronts
Abstract
It is argued that a series of two-satellite observations leads to a clarification of substorm plasma injection, in which boundary motion plays a major role. Emphasis is put on a type of event characterized by abrupt, dispersionless changes in electron intensity and a coincident perturbation that consists of both a field magnitude increase and a small rotation toward more dipolar orientation. Comparing plasma observations at two points, it is found that in active, preinjection conditions the two most important features of the plasma sheet are: (1) the low-energy convection boundary for near-zero energy particles, determined by the magnitude of the large-scale convection electric field; and (2) the precipitation-flow boundary layer between the hot plasma sheet and the atmospherically contaminated inner plasma sheet.
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Moore, T. E., Arnoldy, R. L., Feynman, J., Hardy, D. A.. 1981-08-01. Propagating substorm injection fronts. https://ntrs.nasa.gov/citations/19810059602
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