Pulsar wind nebulae are efficient particle accelerators, and yet the processes at work remain elusive. Self-generated, microturbulence is too weak in relativistic magnetized shocks to accelerate particles over a wide energy range, suggesting that the global dynamics of the nebula may be involved in the acceleration process instead. In this work, we study the role played by the large-scale anisotropy of the transverse magnetic field profile on the shock dynamics. We performed large two-dimensional particle-in-cell simulations for a wide range of upstream plasma magnetizations. A large-scale velocity shear and current sheets form in the equatorial regions and at the poles, where they drive strong plasma turbulence via Kelvin-Helmholtz vortice...
We study the acceleration of electrons and positrons at an electromagnetically modified, ultrarelati...
Abstract. By means of two- and three-dimensional particle-in-cell simulations, we investigate the pr...
In this paper, we give a detailed account of the first three-dimensional (3D) relativistic magnetohy...
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 ...
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 Crab nebula is one of the most efficient accelerators in the Galaxy and the only galactic source...
The relativistic wind of obliquely-rotating pulsars consists of toroidal stripes of opposite magneti...
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...
Abstract. By means of two- and three-dimensional particle-in-cell simulations, we investigate the pr...
In this paper, we give a detailed account of the first three-dimensional (3D) relativistic magnetohy...
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 ...
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 Crab nebula is one of the most efficient accelerators in the Galaxy and the only galactic source...
The relativistic wind of obliquely-rotating pulsars consists of toroidal stripes of opposite magneti...
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...
Abstract. By means of two- and three-dimensional particle-in-cell simulations, we investigate the pr...
In this paper, we give a detailed account of the first three-dimensional (3D) relativistic magnetohy...