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The Dynamics of a High Mach Number Quasi-Perpendicular Shock: MMS Observations

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arxiv 2011.12346 v1 pith:HXOCCW2I submitted 2020-11-24 physics.plasm-ph physics.space-ph

classification physics.plasm-phphysics.space-ph
keywords shockhighmachobservationstheydynamicsearthions
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abstract

Shock parameters at Earth's bow shock in rare instances can approach the Mach numbers predicted at supernova remnants. We present our analysis of a high Alfv\'en Mach number ($M_A= 27$) shock utilizing multipoint measurements from the Magnetospheric Multiscale (MMS) spacecraft during a crossing of Earth's quasi-perpendicular bow shock. We find that the shock dynamics are mostly driven by reflected ions, perturbations that they generate, and nonlinear amplification of the perturbations. Our analyses show that reflected ions create modest magnetic enhancements upstream of the shock which evolve in a nonlinear manner as they traverse the shock foot. They can transform into proto-shocks that propagate at small angles to the magnetic field and towards the bow shock. The nonstationary bow shock shows signatures of both reformation and surface ripples. Our observations indicate that although shock reformation occurs, the main shock layer never disappears. These observations are at high plasma $\beta$, a parameter regime which has not been well explored by numerical models.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Occurrence of Non-Stationarity at Earth's Quasi-Perpendicular Bow Shock

    physics.space-ph 2025-07 conditional novelty 6.0 of 10

    A statistical survey of 521 MMS crossings finds ion holes in 65% of shocks, implying the quasi-perpendicular bow shock is typically rippled and non-stationary.

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