A rotating pulsar creates a surrounding pulsar wind nebula (PWN) by steadily releasing an energetic wind into the interior of the expanding shockwave of supernova remnant or interstellar medium. At the termination shock of a PWN, the Poynting-flux- dominated relativistic striped wind is compressed. Magnetic reconnection is driven by the compression and converts magnetic energy into particle kinetic energy and accelerating particles to high energies. We carrying out particle-in-cell (PIC) simulations to study the shock structure as well as the energy conversion and particle acceleration mechanism. By analyzing particle trajectories, we find that many particles are accelerated by Fermi-type mechanism. The maximum energy for electrons and posi...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
Magnetic reconnection is thought to be the driver for many explosive phenomena in the universe. The ...
International audienceWe review the physics of relativistic shocks, which are often invoked as the s...
The relativistic wind of obliquely rotating pulsars consists of toroidal stripes of opposite magneti...
The relativistic wind of obliquely rotating pulsars consists of toroidal stripes of opposite magneti...
The relativistic wind of obliquely-rotating pulsars consists of toroidal stripes of opposite magneti...
Abstract. By means of two- and three-dimensional particle-in-cell simulations, we investigate the pr...
We study the acceleration of electrons and positrons at an electromagnetically modified, ultrarelati...
We study the acceleration of electrons and positrons at an electromagnetically modified, ultrarelati...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
Magnetic reconnection is thought to be the driver for many explosive phenomena in the universe. The ...
International audienceWe review the physics of relativistic shocks, which are often invoked as the s...
The relativistic wind of obliquely rotating pulsars consists of toroidal stripes of opposite magneti...
The relativistic wind of obliquely rotating pulsars consists of toroidal stripes of opposite magneti...
The relativistic wind of obliquely-rotating pulsars consists of toroidal stripes of opposite magneti...
Abstract. By means of two- and three-dimensional particle-in-cell simulations, we investigate the pr...
We study the acceleration of electrons and positrons at an electromagnetically modified, ultrarelati...
We study the acceleration of electrons and positrons at an electromagnetically modified, ultrarelati...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
International audienceContext. Pulsar wind nebulae are efficient particle accelerators, and yet the ...
Magnetic reconnection is thought to be the driver for many explosive phenomena in the universe. The ...
International audienceWe review the physics of relativistic shocks, which are often invoked as the s...