English

Electron energy partition across interplanetary shocks: I. Methodology and Data Product

Space Physics 2019-07-10 v4 Solar and Stellar Astrophysics Plasma Physics

Abstract

Analysis of 15314 electron velocity distribution functions (VDFs) within ±\pm2 hours of 52 interplanetary (IP) shocks observed by the \emph{Wind} spacecraft near 1 AU are introduced. The electron VDFs are fit to the sum of three model functions for the cold dense core, hot tenuous halo, and field-aligned beam/strahl component. The best results were found by modeling the core as either a bi-kappa or a symmetric (or asymmetric) bi-self-similar velocity distribution function, while both the halo and beam/strahl components were best fit to bi-kappa velocity distribution function. This is the first statistical study to show that the core electron distribution is better fit to a self-similar velocity distribution function than a bi-Maxwellian under all conditions. The self-similar distribution deviation from a Maxwellian is a measure of inelasticity in particle scattering from waves and/or turbulence. The range of values defined by the lower and upper quartiles for the kappa exponents are κec\kappa{\scriptstyle_{ec}} \sim 5.40--10.2 for the core, κeh\kappa{\scriptstyle_{eh}} \sim 3.58--5.34 for the halo, and κeb\kappa{\scriptstyle_{eb}} \sim 3.40--5.16 for the beam/strahl. The lower-to-upper quartile range of symmetric bi-self-similar core exponents are secs{\scriptstyle_{ec}} \sim 2.00--2.04, and asymmetric bi-self-similar core exponents are pecp{\scriptstyle_{ec}} \sim 2.20--4.00 for the parallel exponent, and qecq{\scriptstyle_{ec}} \sim 2.00--2.46 for the perpendicular exponent. The nuanced details of the fit procedure and description of resulting data product are also presented. The statistics and detailed analysis of the results are presented in Paper II and Paper III of this three-part study.

Keywords

Cite

@article{arxiv.1902.01476,
  title  = {Electron energy partition across interplanetary shocks: I. Methodology and Data Product},
  author = {Lynn B. Wilson and Li-Jen Chen and Shan Wang and Steven J. Schwartz and Drew L. Turner and Michael L. Stevens and Justin C. Kasper and Adnane Osmane and Damiano Caprioli and Stuart D. Bale and Marc P. Pulupa and Chadi S. Salem and Katherine A. Goodrich},
  journal= {arXiv preprint arXiv:1902.01476},
  year   = {2019}
}

Comments

35 pages, 10 figures, 3 tables, under review in Astrophys. J. Suppl [updated in response to 2nd round of referee comments]

R2 v1 2026-06-23T07:32:02.216Z