International audienceThe merger of two neutron stars may give birth to a long-lived hypermassive neutron star. If it harbours a strong magnetic field of magnetar strength, its spin-down could explain several features of short gamma-ray burst afterglows. The magnetorotational instability (MRI) has been proposed as a mechanism to amplify the magnetic field to the required strength. Previous studies have, however, neglected neutrinos that may have an important impact on the MRI by inducing a viscosity and drag. We investigate the impact of these neutrinos effects on the linear growth of the MRI by applying a local stability analysis to snapshots of a neutron star merger simulation. We find that neutrinos have a significant impact inside the h...
Context. Magnetars are isolated neutron stars characterized by their variable high-energy emission, ...
International audienceThe magnetorotational instability (MRI) is a promising mechanism to amplify th...
Compact stars can be treated as the ultimate laboratories for testing theories of dense matter. They...
International audienceThe merger of two neutron stars may give birth to a long-lived hypermassive ne...
Mergers of binary neutron stars likely lead to the formation of a hypermassive neutron star (HMNS), ...
Neutrino radiation takes a major role in the momentum, heat, and lepton transports in proto-neutron ...
A differentially rotating hypermassive neutron star (HMNS) is a metastable object which can be forme...
Context. Magneto-rotational instability (MRI) has been suggested to lead to a rapid growth of the ma...
We investigate the influence of magnetic fields on the evolution of binary neutron star (BNS) merger...
We explore the process of amplification of the magnetic field initially contained in merging neutron...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
International audienceExtremely strong magnetic fields of the order of 1015G are required to explain...
We report long-term simulations of black hole-neutron star binary mergers where the neutron star pos...
Long-term ideal and resistive magnetohydrodynamics (MHD) simulations in full general relativity are ...
Using accurate and fully general-relativistic simulations we assess the effect that magnetic fields ...
Context. Magnetars are isolated neutron stars characterized by their variable high-energy emission, ...
International audienceThe magnetorotational instability (MRI) is a promising mechanism to amplify th...
Compact stars can be treated as the ultimate laboratories for testing theories of dense matter. They...
International audienceThe merger of two neutron stars may give birth to a long-lived hypermassive ne...
Mergers of binary neutron stars likely lead to the formation of a hypermassive neutron star (HMNS), ...
Neutrino radiation takes a major role in the momentum, heat, and lepton transports in proto-neutron ...
A differentially rotating hypermassive neutron star (HMNS) is a metastable object which can be forme...
Context. Magneto-rotational instability (MRI) has been suggested to lead to a rapid growth of the ma...
We investigate the influence of magnetic fields on the evolution of binary neutron star (BNS) merger...
We explore the process of amplification of the magnetic field initially contained in merging neutron...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
International audienceExtremely strong magnetic fields of the order of 1015G are required to explain...
We report long-term simulations of black hole-neutron star binary mergers where the neutron star pos...
Long-term ideal and resistive magnetohydrodynamics (MHD) simulations in full general relativity are ...
Using accurate and fully general-relativistic simulations we assess the effect that magnetic fields ...
Context. Magnetars are isolated neutron stars characterized by their variable high-energy emission, ...
International audienceThe magnetorotational instability (MRI) is a promising mechanism to amplify th...
Compact stars can be treated as the ultimate laboratories for testing theories of dense matter. They...