Pulsars are highly magnetized fast rotating neutron stars producing a pulsed radiation. This thesis is dedicated to their magnetosphere, namely the zone surrounding the star and filled with a plasma dragged by the rotation of the star. It was shown as soon as 1969 that the magne-tosphere must have vacuum gaps, where intense electric fields develop that are capable of accelerating the rarefied plasma to very high energies along the magnetic field. The curvature of the field lines, together with the rotation around the magnetic field, results in the so-called « synchrocurvature » radiation. The energy is mostly radiated in gamma photons (γ). These photons may then be converted by the γ-photon- magnetic-field or γ-γ quantum processes in an ele...
Several important properties of rotation-powered millisecond pulsars (MSPs), such as their mass-radi...
Pulsars (rapidly spinning neutron stars) emit beams of intense radiation in the radio part of the el...
Pulsars are thought to be fast rotating neutron stars, synchronously emitting periodic Dirac-delta-...
Pulsars are highly magnetized fast rotating neutron stars producing a pulsed radiation. This thesis ...
[[abstract]]We investigate a pair creation cascade in the magnetosphere of a rapidly rotating neutro...
A synthesis of the present knowledge on gamma-ray emission from the magnetosphere of a rapidly rotat...
Soon after the discovery of radio pulsars in 1967, the pulsars are identi¯ed as strongly magnetic (t...
Studying the electromagnetic field around neutron stars is one of the vital methods to understand th...
Les pulsars sont des étoiles à neutron hautement magnétisées en rotation rapide produisant un rayonn...
The Crab Nebula, containing in its center a highly magnetized neutron star - the Crab pulsar, was es...
In the large magnetic fields associated with highly magnetized neutron stars, the Compton cross sect...
[[abstract]]A new version of the theory of pulsar radio emission is developed for the case of a coax...
International audienceWe review electrodynamics of rotating magnetized neutron stars, from the early...
Pulsars are highly magnetized fast rotating neutron stars producing a pulsed radiation. This thesis ...
Neutron stars are surrounded by dense magnetospheres with nontrivial magnetic field structure. They ...
Several important properties of rotation-powered millisecond pulsars (MSPs), such as their mass-radi...
Pulsars (rapidly spinning neutron stars) emit beams of intense radiation in the radio part of the el...
Pulsars are thought to be fast rotating neutron stars, synchronously emitting periodic Dirac-delta-...
Pulsars are highly magnetized fast rotating neutron stars producing a pulsed radiation. This thesis ...
[[abstract]]We investigate a pair creation cascade in the magnetosphere of a rapidly rotating neutro...
A synthesis of the present knowledge on gamma-ray emission from the magnetosphere of a rapidly rotat...
Soon after the discovery of radio pulsars in 1967, the pulsars are identi¯ed as strongly magnetic (t...
Studying the electromagnetic field around neutron stars is one of the vital methods to understand th...
Les pulsars sont des étoiles à neutron hautement magnétisées en rotation rapide produisant un rayonn...
The Crab Nebula, containing in its center a highly magnetized neutron star - the Crab pulsar, was es...
In the large magnetic fields associated with highly magnetized neutron stars, the Compton cross sect...
[[abstract]]A new version of the theory of pulsar radio emission is developed for the case of a coax...
International audienceWe review electrodynamics of rotating magnetized neutron stars, from the early...
Pulsars are highly magnetized fast rotating neutron stars producing a pulsed radiation. This thesis ...
Neutron stars are surrounded by dense magnetospheres with nontrivial magnetic field structure. They ...
Several important properties of rotation-powered millisecond pulsars (MSPs), such as their mass-radi...
Pulsars (rapidly spinning neutron stars) emit beams of intense radiation in the radio part of the el...
Pulsars are thought to be fast rotating neutron stars, synchronously emitting periodic Dirac-delta-...