International audienceThe physics of collisionless shocks is a very broad topic which has been studied for more than five decades. However, there are a number of important issues which remain unresolved. The energy repartition amongst particle populations in quasiperpendicular shocks is a multi-scale process related to the spatial and temporal structure of the electromagnetic fields within the shock layer. The most important processes take place in the close vicinity of the major magnetic transition or ramp region. The distribution of electromagnetic fields in this region determines the characteristics of ion reflection and thus defines the conditions for ion heating and energy dissipation for supercritical shocks and also the region where ...
Collisionless shocks in space plasmas are known to be capable of accelerating particles to very high...
International audienceStationary shocks (Part 1) represent a first (simplified) approach of collisio...
International audienceCollisionless shocks, that is shocks mediated by electromagnetic processes, ar...
International audienceThe physics of collisionless shocks is a very broad topic which has been studi...
International audienceThe physics of collisionless shocks is a very broad topic which has been studi...
International audience[1] A set of experimental data is presented for a high-Mach-number (M f = 5) q...
International audienceCollisionless shocks are ubiquitous throughout the universe and are efficient ...
We review the ion and electron heating at the quasi-perpendicular collision-less shock front. The sh...
International audienceCollisionless shock waves in plasmas are usually considered as stationary nonl...
Shock waves are responsible for slowing down and heating supersonic flows. In collisionless space pl...
International audienceShock waves are ubiquitous in space and astrophysics. They transform directed ...
Shock waves are ubiquitous in space and astrophysics. Shocks transform directed particle flow energy...
Collisionless shocks are ubiquitous throughout the universe: around stars, supernova remnants, activ...
Shock waves form when supersonic flows encounter an obstacle. Like in regular gases, shock waves can...
Collisionless shocks in space plasmas are known to be capable of accelerating particles to very high...
International audienceStationary shocks (Part 1) represent a first (simplified) approach of collisio...
International audienceCollisionless shocks, that is shocks mediated by electromagnetic processes, ar...
International audienceThe physics of collisionless shocks is a very broad topic which has been studi...
International audienceThe physics of collisionless shocks is a very broad topic which has been studi...
International audience[1] A set of experimental data is presented for a high-Mach-number (M f = 5) q...
International audienceCollisionless shocks are ubiquitous throughout the universe and are efficient ...
We review the ion and electron heating at the quasi-perpendicular collision-less shock front. The sh...
International audienceCollisionless shock waves in plasmas are usually considered as stationary nonl...
Shock waves are responsible for slowing down and heating supersonic flows. In collisionless space pl...
International audienceShock waves are ubiquitous in space and astrophysics. They transform directed ...
Shock waves are ubiquitous in space and astrophysics. Shocks transform directed particle flow energy...
Collisionless shocks are ubiquitous throughout the universe: around stars, supernova remnants, activ...
Shock waves form when supersonic flows encounter an obstacle. Like in regular gases, shock waves can...
Collisionless shocks in space plasmas are known to be capable of accelerating particles to very high...
International audienceStationary shocks (Part 1) represent a first (simplified) approach of collisio...
International audienceCollisionless shocks, that is shocks mediated by electromagnetic processes, ar...