We present observations by the Ulysses solar wind plasma experiment of a new class of suprathermal electron signatures. At low solar latitudes and heliocentric distances beyond 3.37 AU Ulysses encountered seven intervals, ranging in duration from 1 hour to 22 hours, in which the suprathermal distributions included an antisunward field-aligned beam and a return population with a flux dropout typically spanning from the sunward field-aligned direction. All events occurred between the forward and reverse shocks or waves bounding corotating interaction regions (CIRs). The observations support a scenario in which the sunward-moving electrons result from reflection of the prevailing antisunward field-aligned beam at magnetic field compressions downstream from the spacecraft, with wide loss cones caused by the relatively weak mirror ratio. This hypothesis requires that the field magnitude within the CIRs actually increased locally with increasing field-aligned distance from the Sun.
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20 July 1996
Proceedings of the eigth international solar wind conference: Solar wind eight
25-30 Jun 1995
Dana Point, California (USA)
Research Article|
July 20 1996
Suprathermal electron loss cone distributions in the solar wind: Ulysses observations Available to Purchase
J. L. Phillips;
J. L. Phillips
Los Alamos National Laboratory
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W. C. Feldman;
W. C. Feldman
Los Alamos National Laboratory
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J. T. Gosling;
J. T. Gosling
Los Alamos National Laboratory
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R. J. Forsyth
R. J. Forsyth
Imperial College
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J. L. Phillips
W. C. Feldman
J. T. Gosling
C. M. Hammond
R. J. Forsyth
Los Alamos National Laboratory
AIP Conf. Proc. 382, 293–296 (1996)
Citation
J. L. Phillips, W. C. Feldman, J. T. Gosling, C. M. Hammond, R. J. Forsyth; Suprathermal electron loss cone distributions in the solar wind: Ulysses observations. AIP Conf. Proc. 20 July 1996; 382 (1): 293–296. https://doi.org/10.1063/1.51401
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