Occurrence of Non-Stationarity at Earth's Quasi-Perpendicular Bow Shock
arXiv:2507.13817 · doi:10.1029/2025GL116121
Abstract
Collisionless shocks can exhibit non-stationary behavior even under steady upstream conditions, forming a complex transition region. Ion phase-space holes, linked to shock self-reformation and surface ripples, are a signature of this non-stationarity. We statistically analyze their occurrence using 521 crossings of Earth's quasi-perpendicular bow shock. Phase-space holes appear in 65% of cases, though the actual rate may be higher as the holes may not be resolved during fast shock crossings. The occurrence rate peaks at 70% for shocks with Alfvén Mach numbers . These findings suggest that Earth's quasi-perpendicular bow shock is predominantly non-stationary.
5 pages, 4 figures
References in corpus (5)
- A database of MMS bow shock crossings compiled using machine learning
- Automated classification of plasma regions using 3D particle energy distributions
- Whistler Waves in the foot of Quasi-Perpendicular Super-Critical Shocks
- Backstreaming ions at a high Mach number interplanetary shock: Solar Orbiter measurements during the nominal mission phase
- Ion Reflection by a Rippled Perpendicular Shock