Weibel-dominated quasi-perpendicular shock: hybrid simulations and in situ observations
arXiv:2310.13779 · doi:10.1093/mnras/stad2038
Abstract
We directly compare hybrid kinetic simulations and in situ observations of a high Mach number high- shock in the Solar wind. We launch virtual probes to demonstrate that the model quantitatively reproduces the observations. The observed wave properties are caused by the ion Weibel instability in the shock foot. Parameters of reflected ions in the shock foot are extracted from simulations, and their coordinate dependencies are linearly approximated. These approximations could be used in analytical models. Due to strong magnetic variations at ramp the reflected ions density can be locally very high (nearly that of the incoming flow), which makes favourable conditions for the instability.
11 pages, 10 figures
References in corpus (7)
- Shocks and cold fronts in galaxy clusters
- On the structure of relativistic collisionless shocks in electron-ion plasmas
- Nonrelativistic collisionless shocks in weakly magnetized electron--ion plasmas: two-dimensional particle-in-cell simulation of perpendicular shock
- Shocks and non-thermal particles in clusters of galaxies
- Solar wind discontinuity transformation at the bow shock
- MMS direct observations of kinetic-scale shock self-reformation
- Mach Number Dependence of Ion-scale Kinetic Instability at Collisionless Perpendicular Shock: Condition for Weibel-dominated Shock