76 citations · 95 across the 4 of their papers we have counts for
8 papers · 1 filter
Electron energy partition across interplanetary shocks: II. Statistics
Lynn B. Wilson, Li-Jen Chen, Shan Wang +10
A statistical analysis of 15,210 electron velocity distribution function (VDF) fits, observed within 2 hours of 52 interplanetary (IP) shocks by the spacecraft near 1 A…
A Case for Electron-Astrophysics
Daniel Verscharen, Robert T. Wicks, Olga Alexandrova +27
A grand-challenge problem at the forefront of physics is to understand how energy is transported and transformed in plasmas. This fundamental research priority encapsulates the con…
Self-induced Scattering of Strahl Electrons in the Solar Wind
Daniel Verscharen, Benjamin D. G. Chandran, Seong-Yeop Jeong +3
We investigate the scattering of strahl electrons by microinstabilities as a mechanism for creating the electron halo in the solar wind. We develop a mathematical framework for the…
Electron energy partition across interplanetary shocks: I. Methodology and Data Product
Lynn B. Wilson, Li-Jen Chen, Shan Wang +10
Analysis of 15314 electron velocity distribution functions (VDFs) within 2 hours of 52 interplanetary (IP) shocks observed by the \emph{Wind} spacecraft near 1 AU are introduc…
Alpha particle thermodynamics in the inner heliosphere fast solar wind
D. Stansby, D. Perrone, L. Matteini +2
Plasma processes occurring in the corona and solar wind can be probed by studying the thermodynamic properties of different ion species. However, most in-situ observations of posit…
ALPS: The Arbitrary Linear Plasma Solver
Daniel Verscharen, Kristopher G. Klein, Benjamin D. G. Chandran +3
The Arbitrary Linear Plasma Solver (ALPS) is a parallelised numerical code that solves the dispersion relation in a hot (even relativistic) magnetised plasma with an arbitrary numb…