Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that accompany the merger of two neutron stars. General relativistic magnetohydrodynamic (MHD) simulations offer a unique opportunity to unravel the details of the ongoing physical processes. Nevertheless, current numerical studies are severely limited by the fact that any affordable resolution remains insufficient to fully capture the small-scale dynamo, initially triggered by the Kelvin-Helmholtz instability, and later sourced by several MHD processes involving differential rotation. Here, we alleviate this limitation by using explicit large-eddy simulations, a technique where the unresolved dynamics occurring at the sub-grid scales (SGS) is modele...
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...
Aims.During the first 40 s after their birth, proto-neutron stars are expected to be subject to at l...
Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that acc...
Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that acc...
The detection of binary neutron star mergers represents one of the most important and complex astrop...
The detection of binary neutron star mergers represents one of the most important and complex astrop...
The detection of a binary neutron star (BNS) merger in 2017 through both gravitational waves and ele...
The detection of binary neutron star mergers represents one of the most important and complex astrop...
The merger of binary neutron stars (BNSs) can lead to large amplifications of the magnetic field due...
We perform a general-relativistic magnetohydrodynamics simulation for $\approx 30$ ms after merger o...
Context. Global magnetohydrodynamic simulations show the growth of Kelvin-Helmholtz instabilities at...
Context. Global magnetohydrodynamic simulations show the growth of Kelvin-Helmholtz instabilities at...
The simultaneous detection of electromagnetic and gravitational wave emission from merging neu-tron ...
Long-term neutrino-radiation resistive-magnetohydrodynamics simulations in full general relativity a...
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...
Aims.During the first 40 s after their birth, proto-neutron stars are expected to be subject to at l...
Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that acc...
Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that acc...
The detection of binary neutron star mergers represents one of the most important and complex astrop...
The detection of binary neutron star mergers represents one of the most important and complex astrop...
The detection of a binary neutron star (BNS) merger in 2017 through both gravitational waves and ele...
The detection of binary neutron star mergers represents one of the most important and complex astrop...
The merger of binary neutron stars (BNSs) can lead to large amplifications of the magnetic field due...
We perform a general-relativistic magnetohydrodynamics simulation for $\approx 30$ ms after merger o...
Context. Global magnetohydrodynamic simulations show the growth of Kelvin-Helmholtz instabilities at...
Context. Global magnetohydrodynamic simulations show the growth of Kelvin-Helmholtz instabilities at...
The simultaneous detection of electromagnetic and gravitational wave emission from merging neu-tron ...
Long-term neutrino-radiation resistive-magnetohydrodynamics simulations in full general relativity a...
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...
Aims.During the first 40 s after their birth, proto-neutron stars are expected to be subject to at l...