Published April 1, 1976 | Version Submitted + Published
Journal Article Open

Observations of Energetic Electrons (E ≳ 200KeV) in the Earth's Magnetotail: Plasma Sheet and Fireball Observations

Abstract

With the California Institute of Technology electron/isotope spectrometer (EIS) aboard the earth-orbiting spacecraft Imp 8, intense energetic electron events (E ≳ 200 keV) have been observed at ∼30 RE in the magnetotail on 13 of 28 magnetotail passes. In one class of events, peak absolute intensities j(E ≳ 200 keV) = 10³–104 el (cm² s sr)^(−1) are detected; the differential energy spectra for these events are very steep, with power law indices of ∼7. For this class of observations, symmetric electron pitch angle distributions are detected with the presence of little or no unidirectional streaming, a finding consistent with quasi-trapped motion of the particles. Concurrent observations with other instrumentation on the same spacecraft indicate that the local magnetic fields possess northward components while simultaneous plasma (50 eV ≤ E ≤ 45 keV) data show bulk flow speeds of a few hundred kilometers per second or less, with intense plasma heating ordinarily occurring. A second distinct class of events corresponds to lower average absolute electron intensities (E ≳ 200 keV), typically harder electron energy spectra, and strong intermittent field-aligned (and tailward) unidirectional streaming of the energetic electrons. During periods when this class of events is observed in the plasma sheet, strong southward components are found in the local magnetic fields, and large tailward bulk plasma flow has been reported (with tailward jetting in excess of 1000 km s^(−1) in certain cases). The second class of events is consistent with energetic electron motion on essentially open field lines. These streaming events are found to be associated with apparent localized acceleration regions in the magnetotail.

Additional Information

Copyright © 1977 by the American Geophysical Union. (Received October 22, 1976; accepted January 14, 1977.) We thank L. A. Frank both for providing us with the extensive set of Imp 8 Lepedea energy-time spectrograms used in this study prior to their publication and for many helpful and informative discussions. We are grateful to R. P. Lepping and N. F. Ness for providing us with the Imp 8 magnetometer data through J. H. King of the National Space Science Data Center. We also thank R. E. Vogt, who has been closely involved in this investigation, and W. E. Althouse, G. J. Hurloral, J. E. Lupton, and R. A. Mewaldt, who made significant contributions to various phases of this program. This work was supported in part by the National Aeronautics and Space Administration under contract NAS5-11066 and grant NGR 05-002-160. The Editor thanks T. P. Armstrong and R. P. Lin for their assistance in evaluating this paper.

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Additional details

Identifiers

Eprint ID
44881
DOI
10.1029/JA082i010p01532
Resolver ID
CaltechAUTHORS:20140411-092245588

Funding

NASA
NAS5-11066
NASA
NGR 05-002-160

Dates

Created
2014-04-11
Created from EPrint's datestamp field
Updated
2021-11-10
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
Space Radiation Laboratory
Other Numbering System Name
Space Radiation Laboratory
Other Numbering System Identifier
1976-03