International audienceSupported by a kinetic simulation, we derive an exclusion energy parameter EX providing a lower kinetic energy bound for an electron to cross from one inflow region to the other during magnetic reconnection. As by a Maxwell demon, only high-energy electrons are permitted to cross the inner reconnection region, setting the electron distribution function observed along the low-density side separatrix during asymmetric reconnection. The analytic model accounts for the two distinct flavors of crescent-shaped electron distributions observed by spacecraft in a thin boundary layer along the low-density separatrix
International audienceMagnetic reconnection is an ubiquitous phenomena enabling the transport across...
International audienceMagnetic reconnection is an ubiquitous phenomena enabling the transport across...
International audienceMagnetic reconnection is an ubiquitous phenomena enabling the transport across...
International audienceSupported by a kinetic simulation, we derive an exclusion energy parameter EX ...
International audienceSupported by a kinetic simulation, we derive an exclusion energy parameter EX ...
International audienceSupported by a kinetic simulation, we derive an exclusion energy parameter EX ...
International audienceSupported by a kinetic simulation, we derive an exclusion energy parameter EX ...
Supported by a kinetic simulation, we derive an exclusion energy parameter $\cal{E}_X$ providing a l...
We study electron distribution functions in a diffusion region of antiparallel asymmetric reconnecti...
Crescent electron distribution functions in the electron diffusion region in asymmetric reconnection...
Spatial relationships between regions containing signatures of electron physics in asymmetric reconn...
A new look at the structure of the electron diffusion region in collision less magnetic reconnection...
The electron diffusion region during magnetic reconnection lies in different regimes depending on th...
Crescent electron distribution functions in the electron diffusion region in asymmetric reconnection...
International audienceWe present observations of asymmetric magnetic reconnection showing evidence o...
International audienceMagnetic reconnection is an ubiquitous phenomena enabling the transport across...
International audienceMagnetic reconnection is an ubiquitous phenomena enabling the transport across...
International audienceMagnetic reconnection is an ubiquitous phenomena enabling the transport across...
International audienceSupported by a kinetic simulation, we derive an exclusion energy parameter EX ...
International audienceSupported by a kinetic simulation, we derive an exclusion energy parameter EX ...
International audienceSupported by a kinetic simulation, we derive an exclusion energy parameter EX ...
International audienceSupported by a kinetic simulation, we derive an exclusion energy parameter EX ...
Supported by a kinetic simulation, we derive an exclusion energy parameter $\cal{E}_X$ providing a l...
We study electron distribution functions in a diffusion region of antiparallel asymmetric reconnecti...
Crescent electron distribution functions in the electron diffusion region in asymmetric reconnection...
Spatial relationships between regions containing signatures of electron physics in asymmetric reconn...
A new look at the structure of the electron diffusion region in collision less magnetic reconnection...
The electron diffusion region during magnetic reconnection lies in different regimes depending on th...
Crescent electron distribution functions in the electron diffusion region in asymmetric reconnection...
International audienceWe present observations of asymmetric magnetic reconnection showing evidence o...
International audienceMagnetic reconnection is an ubiquitous phenomena enabling the transport across...
International audienceMagnetic reconnection is an ubiquitous phenomena enabling the transport across...
International audienceMagnetic reconnection is an ubiquitous phenomena enabling the transport across...