Electron Energy Partition across Interplanetary Shocks. II. Statistics

Author:

Wilson Lynn B.ORCID,Chen Li-JenORCID,Wang ShanORCID,Schwartz Steven J.ORCID,Turner Drew L.ORCID,Stevens Michael L.ORCID,Kasper Justin C.ORCID,Osmane AdnaneORCID,Caprioli DamianoORCID,Bale Stuart D.ORCID,Pulupa Marc P.ORCID,Salem Chadi S.ORCID,Goodrich Katherine A.ORCID

Abstract

Abstract A statistical analysis of 15,210 electron velocity distribution function (VDF) fits, observed within ±2 hr of 52 interplanetary (IP) shocks by the Wind spacecraft near 1 au, is presented. This is the second in a three-part series on electron VDFs near IP shocks. The electron velocity moment statistics for the dense, low-energy core, tenuous, hot halo, and field-aligned beam/strahl are a statistically significant list of values illustrated with both histograms and tabular lists for reference and baselines in future work. Given the large statistics in this investigation, the beam/strahl fit results in the upstream are now the most comprehensive attempt to parameterize the beam/strahl electron velocity moments in the ambient solar wind. The median density, temperature, beta, and temperature anisotropy values for the core(halo)[beam/strahl] components, with subscripts ec(eh)[eb], of all fit results, respectively, are , , , and . This work will also serve as a 1 au baseline and reference for missions like Parker Solar Probe and Solar Orbiter.

Funder

NASA

NSF

Department of Energy

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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