Collisionless shocks are one of the most peculiar phenomena in space where non-linear collective phenomena in the plasma dominate the dynamics. They are believed to be one of the most efficient particle accelerators in the universe, and have internal dynamics that are yet to be fully explored. In this project we aim to understand the interplay between the electrostatic turbulence in the shock ramp and the electron dynamics leading to thermalization across the shock. To do so we first use a machine learning technique to compile a database of shocks crossings observed by magnetospheric multiscale (MMS), which will facilitate both case studies and statistical studies of shocks using MMS. The database contains 2803 shock crossings spanning a pe...
International audienceWhistler wave trains are observed in the foot region of high Mach number quasi...
Collisionless shocks are ubiquitous throughout the universe: around stars, supernova remnants, activ...
International audienceElectrons are accelerated to non-thermal energies at shocks in space and astro...
Collisionless shocks are one of the most peculiar phenomena in space where non-linear collective phe...
The whistler-mode wave extending from the fast-magnetosonic wave branch is a fundamental perturbatio...
We study the physics of electron acceleration at collisionless shocks that move through a plasma con...
Shock waves are ubiquitous in space and astrophysics. Shocks transform directed particle flow energy...
Shock waves form when supersonic flows encounter an obstacle. Like in regular gases, shock waves can...
International audienceThe properties of whistler waves near lower‐hybrid frequencies within Earth's ...
Shock waves in interplanetary (IP) space are of considerable interest due to their potential to dama...
Whistler waves are thought to play an essential role in the dynamics of collisionless shocks. We use...
International audienceCollisionless shocks are ubiquitous throughout the universe and are efficient ...
We present observations of electromagnetic precursor waves, identified as whistler mode waves, at su...
International audienceWhistler wave trains are observed in the foot region of high Mach number quasi...
Collisionless shocks are ubiquitous throughout the universe: around stars, supernova remnants, activ...
International audienceElectrons are accelerated to non-thermal energies at shocks in space and astro...
Collisionless shocks are one of the most peculiar phenomena in space where non-linear collective phe...
The whistler-mode wave extending from the fast-magnetosonic wave branch is a fundamental perturbatio...
We study the physics of electron acceleration at collisionless shocks that move through a plasma con...
Shock waves are ubiquitous in space and astrophysics. Shocks transform directed particle flow energy...
Shock waves form when supersonic flows encounter an obstacle. Like in regular gases, shock waves can...
International audienceThe properties of whistler waves near lower‐hybrid frequencies within Earth's ...
Shock waves in interplanetary (IP) space are of considerable interest due to their potential to dama...
Whistler waves are thought to play an essential role in the dynamics of collisionless shocks. We use...
International audienceCollisionless shocks are ubiquitous throughout the universe and are efficient ...
We present observations of electromagnetic precursor waves, identified as whistler mode waves, at su...
International audienceWhistler wave trains are observed in the foot region of high Mach number quasi...
Collisionless shocks are ubiquitous throughout the universe: around stars, supernova remnants, activ...
International audienceElectrons are accelerated to non-thermal energies at shocks in space and astro...