The Martian bow shock is a rich example of a supercritical, mass-loaded collisionless shock that coexists with ultra-low frequency upstream waves that are generated by the pick-up of exospheric ions. The small size of the bow shock stand-off distance (comparable with the solar wind ion convective gyroradius) raises questions about the nature of the particle acceleration and energy dissipation mechanism at work. The study of the Martian shock structure is crucial to understand its microphysics and is of special interest to understand the solar wind—planet interaction with a virtually unmagnetized body. We report on a complete identification and first characterization of the supercritical substructures of the Martian quasi-perpendicular shock...
Shock waves are responsible for slowing down and heating supersonic flows. In collisionless space pl...
Mars Atmosphere and Volatile EvolutioN observations at Mars show clear signatures of the shocked sol...
International audienceThe reflection of solar wind protons on the Martian bow shock (BS) is investig...
International audienceThe Martian bow shock is a rich example of a supercritical, mass-loaded collis...
International audienceWe investigate the properties of an interplanetary shock (MA=3.0, qBn=80°) pro...
The ion mass analyzer (IMA) on board Mars Express revealed bundled structures of ions in the energy ...
Bow shock, formed by the interaction between the solar wind and a planet, is generated in different ...
Shock waves form when supersonic flows encounter an obstacle. Like in regular gases, shock waves can...
The Earth's bow shock is a boundary where the solar wind becomes decelerated from supersonic to subs...
International audienceWe investigate the properties of an interplanetary (IP) shock (M f = 2.1, θ = ...
International audienceCollisionless shocks are ubiquitous throughout the universe and are efficient ...
International audienceWe carried out global Particle-in-Cell simulations of the interaction between ...
Collisionless shocks in space plasmas are known to be capable of accelerating particles to very high...
Shock waves are responsible for slowing down and heating supersonic flows. In collisionless space pl...
Mars Atmosphere and Volatile EvolutioN observations at Mars show clear signatures of the shocked sol...
International audienceThe reflection of solar wind protons on the Martian bow shock (BS) is investig...
International audienceThe Martian bow shock is a rich example of a supercritical, mass-loaded collis...
International audienceWe investigate the properties of an interplanetary shock (MA=3.0, qBn=80°) pro...
The ion mass analyzer (IMA) on board Mars Express revealed bundled structures of ions in the energy ...
Bow shock, formed by the interaction between the solar wind and a planet, is generated in different ...
Shock waves form when supersonic flows encounter an obstacle. Like in regular gases, shock waves can...
The Earth's bow shock is a boundary where the solar wind becomes decelerated from supersonic to subs...
International audienceWe investigate the properties of an interplanetary (IP) shock (M f = 2.1, θ = ...
International audienceCollisionless shocks are ubiquitous throughout the universe and are efficient ...
International audienceWe carried out global Particle-in-Cell simulations of the interaction between ...
Collisionless shocks in space plasmas are known to be capable of accelerating particles to very high...
Shock waves are responsible for slowing down and heating supersonic flows. In collisionless space pl...
Mars Atmosphere and Volatile EvolutioN observations at Mars show clear signatures of the shocked sol...
International audienceThe reflection of solar wind protons on the Martian bow shock (BS) is investig...