We investigate the effects on electron acceleration of an electromagnetically modified termination shock (TS) in pulsar wind nebulae (PWNe). The physics of the magnetized pulsar wind simulated in a two-fluid code with a magnetic shear wave which converts in superluminal waves when the plasma density is below a certain threshold. This condition can be met for example in binary systems hosting a PWN when the pulsar is far from periastron. The modification of the TS structure leads to energization of particles incoming with the wind, and a sizeable fraction of these arc reflected and therefore made available for further acceleration. Using a Monte Carlo code, we show that this subsequent acceleration process is remarkably similar to first-orde...
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 ...
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...
Many astrophysical sources are very efficient particle accelerators. Among these, PulsarWind Nebulae...
Many astrophysical sources are very efficient particle accelerators. Among these, Pulsar Wind Nebula...
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...
A rotating pulsar creates a surrounding pulsar wind nebula (PWN) by steadily releasing an energetic ...
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...
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 ...
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...
Many astrophysical sources are very efficient particle accelerators. Among these, PulsarWind Nebulae...
Many astrophysical sources are very efficient particle accelerators. Among these, Pulsar Wind Nebula...
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...
A rotating pulsar creates a surrounding pulsar wind nebula (PWN) by steadily releasing an energetic ...
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...
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 ...