The detection of binary neutron star mergers represents one of the most important and complex astrophysical discoveries of the recent years. One of the unclear aspects of the problem is the turbulent magnetic field amplification, initially triggered by the Kelvin-Helmholtz instability at much smaller scales than any reachable numerical resolution nowadays. Here we present numerical simulations of the first 10 milliseconds of a binary neutron star merger. First, we confirm in detail how the simulated amplification depends on the numerical resolution and is distributed on a broad range of scales, as expected from turbulent magnetohydrodynamics theory. We find that an initial large-scale magnetic field of 1011 G inside each star is amplified i...
The modelling of astrophysical systems such as binary neutron star mergers or the formation of magne...
The amplification of magnetic fields plays an important role in explaining numerous astrophysical ph...
Using accurate and fully general-relativistic simulations we assess the effect that magnetic fields ...
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...
Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that acc...
The detection of a binary neutron star (BNS) merger in 2017 through both gravitational waves and ele...
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 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...
The simultaneous detection of electromagnetic and gravitational wave emission from merging neu-tron ...
Context. Global magnetohydrodynamic simulations show the growth of Kelvin-Helmholtz instabilities at...
Context. Global magnetohydrodynamic simulations show the growth of Kelvin-Helmholtz instabilities at...
Neutron star mergers are very violent events involving extreme physical processes: dynamic, strong-f...
The modelling of astrophysical systems such as binary neutron star mergers or the formation of magne...
The amplification of magnetic fields plays an important role in explaining numerous astrophysical ph...
Using accurate and fully general-relativistic simulations we assess the effect that magnetic fields ...
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...
Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that acc...
The detection of a binary neutron star (BNS) merger in 2017 through both gravitational waves and ele...
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 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...
The simultaneous detection of electromagnetic and gravitational wave emission from merging neu-tron ...
Context. Global magnetohydrodynamic simulations show the growth of Kelvin-Helmholtz instabilities at...
Context. Global magnetohydrodynamic simulations show the growth of Kelvin-Helmholtz instabilities at...
Neutron star mergers are very violent events involving extreme physical processes: dynamic, strong-f...
The modelling of astrophysical systems such as binary neutron star mergers or the formation of magne...
The amplification of magnetic fields plays an important role in explaining numerous astrophysical ph...
Using accurate and fully general-relativistic simulations we assess the effect that magnetic fields ...