Radiative corrections of quantum electrodynamics cause a vacuum threaded by a magnetic field to be birefringent. This means that radiation of different polarizations travels at different speeds. Even in the strong magnetic fields of astrophysical sources, the difference in speed is small. However, it has profound consequences for the extent of polarization expected from strongly magnetized sources. We demonstrate how the birefringence arises from first principles, show how birefringence affects the polarization state of radiation and present recent calculations for the expected polarization from magnetars and X-ray pulsars
In the presence of strong magnetic fields, the vacuum becomes a birefringent medium. We show that th...
Abstract In a recent paper it is claimed that vacuum birefringence has been experimentally observed ...
We calculate the polarization of radiation from thick accretion disks with vertically averaged globa...
Radiative corrections of quantum electrodynamics cause a vacuum threaded by a magnetic field to be b...
Radiative corrections of quantum electrodynamics cause a vacuum threaded by a magnetic field to be b...
Radiative corrections of quantum electrodynamics cause a vacuum threaded by a magnetic field to be b...
The effect of vacuum birefringence is one of the first predictions of quantum electrodynamics (QED):...
The effect of vacuum birefringence is one of the first predictions of quantum electrodynamics (QED):...
The effect of vacuum birefringence is one of the first predictions of quantum electrodynamics (QED):...
The effect of vacuum birefringence is one of the first predictions of quantum electrodynamics (QED):...
In the presence of strong magnetic fields, the vacuum becomes a birefringent medium. We show that th...
The emission from accreting black holes and neutron stars, as well as from the highly magnetized neu...
The emission from accreting black holes and neutron stars, as well as from the highly magnetized neu...
In a recent paper it is claimed that vacuum birefringence has been experimentally observed for the f...
Abstract In this paper we represent nonperturbative calculation for one-loop Quantum Electrodynamics...
In the presence of strong magnetic fields, the vacuum becomes a birefringent medium. We show that th...
Abstract In a recent paper it is claimed that vacuum birefringence has been experimentally observed ...
We calculate the polarization of radiation from thick accretion disks with vertically averaged globa...
Radiative corrections of quantum electrodynamics cause a vacuum threaded by a magnetic field to be b...
Radiative corrections of quantum electrodynamics cause a vacuum threaded by a magnetic field to be b...
Radiative corrections of quantum electrodynamics cause a vacuum threaded by a magnetic field to be b...
The effect of vacuum birefringence is one of the first predictions of quantum electrodynamics (QED):...
The effect of vacuum birefringence is one of the first predictions of quantum electrodynamics (QED):...
The effect of vacuum birefringence is one of the first predictions of quantum electrodynamics (QED):...
The effect of vacuum birefringence is one of the first predictions of quantum electrodynamics (QED):...
In the presence of strong magnetic fields, the vacuum becomes a birefringent medium. We show that th...
The emission from accreting black holes and neutron stars, as well as from the highly magnetized neu...
The emission from accreting black holes and neutron stars, as well as from the highly magnetized neu...
In a recent paper it is claimed that vacuum birefringence has been experimentally observed for the f...
Abstract In this paper we represent nonperturbative calculation for one-loop Quantum Electrodynamics...
In the presence of strong magnetic fields, the vacuum becomes a birefringent medium. We show that th...
Abstract In a recent paper it is claimed that vacuum birefringence has been experimentally observed ...
We calculate the polarization of radiation from thick accretion disks with vertically averaged globa...