The overall structure of quasi-perpendicular, high Mach number collisionless shocks is controlled to a large extent by ion reflection at the shock ramp. Departure from a strictly one-dimensional structure is indicated by simulation results showing that the surface of such shocks is rippled, with variations in the density and all field components. We present a detailed analysis of these shock ripples, using results from a two-dimensional hybrid (particle ions, electron fluid) simulation. The process that generates the ripples is poorly understood, because the large gradients at the shock ramp make it difficult to identify instabilities. Our analysis reveals new features of the shock ripples, which suggest the presence of ...
International audienceBoth hybrid/full particle simulations and recent experimental results have cle...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
International audienceCollisionless shock waves in plasmas are usually considered as stationary nonl...
International audienceThe overall structure of quasi-perpendicular, high Mach number collisionless s...
International audienceBoth hybrid/full particle simulations and recent experimental results have cle...
Both hybrid/full particle simulations and recent experimental results have clearly evidenced that th...
Both hybrid/full particle simulations and recent experimental results have clearly evidenced that th...
Collisionless shocks undergo structural changes with the increase of Mach number. Observations and n...
International audienceBoth hybrid/full particle simulations and recent experimental results have cle...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
International audienceBoth hybrid/full particle simulations and recent experimental results have cle...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
International audienceCollisionless shock waves in plasmas are usually considered as stationary nonl...
International audienceThe overall structure of quasi-perpendicular, high Mach number collisionless s...
International audienceBoth hybrid/full particle simulations and recent experimental results have cle...
Both hybrid/full particle simulations and recent experimental results have clearly evidenced that th...
Both hybrid/full particle simulations and recent experimental results have clearly evidenced that th...
Collisionless shocks undergo structural changes with the increase of Mach number. Observations and n...
International audienceBoth hybrid/full particle simulations and recent experimental results have cle...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
International audienceBoth hybrid/full particle simulations and recent experimental results have cle...
Shock ripples are ion-inertial-scale waves propagating within the front region of magnetized quasi-p...
International audienceCollisionless shock waves in plasmas are usually considered as stationary nonl...