In this Letter we analyze the energy distribution evolution of test particles injected in three dimensional (3D) magnetohydrodynamic (MHD) simulations of different magnetic reconnection configurations. When considering a single Sweet-Parker topology, the particles accelerate predominantly through a first-order Fermi process, as predicted in [3] and demonstrated numerically in [8]. When turbulence is included within the current sheet, the acceleration rate is highly enhanced, because reconnection becomes fast and independent of resistivity [4,11] and allows the formation of a thick volume filled with multiple simultaneously reconnecting magnetic fluxes. Charged particles trapped within this volume suffer several head-on scatterings with the ...
Context. Converging flows with strong magnetic fields of different polarity can accelerate particles...
Magnetic reconnection is a ubiquitous plasma physics process responsible for the explosive release ...
International audienceCollisionless, magnetized turbulence offers a promising framework for the gene...
In this Letter we analyze the energy distribution evolution of test particles injected in three dime...
Magnetic fields can change their topology through a process known as magnetic reconnection. This pro...
Magnetic fields can change their topology through a process known as magnetic reconnection. This pro...
Test particles in a two dimensional, turbulent MHD simulation are found to undergo significant accel...
We perform numerical experiments of test particle acceleration on turbulent magnetic and electric fi...
Electron and proton acceleration in three-dimensional electric and magnetic fields is studied throug...
Turbulence is ubiquitous in astrophysics. It radically changes many astrophysical phenomena, in part...
This work provides a concrete implementation of E. Fermi's model of particle acceleration in magneto...
Our numerical simulations show that the reconnection of magnetic field becomes fast in the presence ...
Our numerical simulations show that the reconnection of magnetic field becomes fast in the presence ...
Our numerical simulations show that the reconnection of magnetic field becomes fast in the presence ...
Magnetic reconnection is recognized as a dominant mechanism for converting magnetic energy into the ...
Context. Converging flows with strong magnetic fields of different polarity can accelerate particles...
Magnetic reconnection is a ubiquitous plasma physics process responsible for the explosive release ...
International audienceCollisionless, magnetized turbulence offers a promising framework for the gene...
In this Letter we analyze the energy distribution evolution of test particles injected in three dime...
Magnetic fields can change their topology through a process known as magnetic reconnection. This pro...
Magnetic fields can change their topology through a process known as magnetic reconnection. This pro...
Test particles in a two dimensional, turbulent MHD simulation are found to undergo significant accel...
We perform numerical experiments of test particle acceleration on turbulent magnetic and electric fi...
Electron and proton acceleration in three-dimensional electric and magnetic fields is studied throug...
Turbulence is ubiquitous in astrophysics. It radically changes many astrophysical phenomena, in part...
This work provides a concrete implementation of E. Fermi's model of particle acceleration in magneto...
Our numerical simulations show that the reconnection of magnetic field becomes fast in the presence ...
Our numerical simulations show that the reconnection of magnetic field becomes fast in the presence ...
Our numerical simulations show that the reconnection of magnetic field becomes fast in the presence ...
Magnetic reconnection is recognized as a dominant mechanism for converting magnetic energy into the ...
Context. Converging flows with strong magnetic fields of different polarity can accelerate particles...
Magnetic reconnection is a ubiquitous plasma physics process responsible for the explosive release ...
International audienceCollisionless, magnetized turbulence offers a promising framework for the gene...