THE DETERMINATION OF INTERPLANETARY MAGNETIC-FIELD POLARITIES AROUND SECTOR BOUNDARIES USING E-GREATER-THAN-2-KEV ELECTRONS

被引:60
作者
KAHLER, S [1 ]
LIN, RP [1 ]
机构
[1] UNIV CALIF BERKELEY,SPACE SCI LAB,BERKELEY,CA 94720
关键词
D O I
10.1029/94GL01362
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The determination of the polarities of interplanetary magnetic fields (whether the field direction is outward from or inward toward the sun) has been based on a comparison of observed field directions with the nominal Parker spiral angle. These polarities can be mapped back to the solar source field polarities. This technique fails when field directions deviate substantially from the Parker angle or when fields are substantially kinked. We introduce a simple new technique to determine the polarities of interplanetary fields using E > 2 keV interplanetary electrons which stream along field lines away from the sun. Those electrons usually show distinct unidirectional pitch-angle anisotropies either parallel or anti-parallel to the field. Since the electron flow direction is known to be outward from the sun, the anisotropies parallel to the field indicate outward-pointing, positive-polarity fields, and those anti-parallel indicate inward-pointing, negative-polarity fields. We use data from the UC Berkeley electron experiment on the ISEE-3 spacecraft to compare the field polarities deduced from the electron data, Pe (outward or inward), with the polarities inferred from field directions, Pd, two sector boundaries in 1979. We show examples of large (> 100-degrees) changes in azimuthal field direction PHI over short (< 1 hr) time scales, some with and some without reversals in Pe. The latter cases indicate that such large directional changes can occur in unipolar structures. On the other hand, we found an example of a change in Pe during which the rotation in PHI was < 30-degrees, indicating polarity changes in nearly unidirectional structures. The field directions are poor guides to the polarities in these cases.
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页码:1575 / 1578
页数:4
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