Long-term neutrino-radiation resistive-magnetohydrodynamics simulations in full general relativity are performed for a system composed of a massive neutron star and a torus formed as a remnant of binary neutron star mergers. The simulation is performed in axial symmetry incorporating a mean-field dynamo term for a hypothetical amplification of the magnetic-field strength. We first calibrate the mean-field dynamo parameters by comparing the results for the evolution of black hole-disk systems with viscous hydrodynamics results. We then perform simulations for the system of a remnant massive neutron star and a torus. As in the viscous hydrodynamics case, the mass ejection occurs primarily from the torus surrounding the massive neutron star. T...
A differentially rotating hypermassive neutron star (HMNS) is a metastable object which can be forme...
Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that acc...
By performing new, long and numerically accurate general-relativistic simulations of magnetized, equ...
Long-term neutrino-radiation resistive-magnetohydrodynamics simulations in full general relativity a...
Long-term ideal and resistive magnetohydrodynamics (MHD) simulations in full general relativity are ...
Numerical-relativity simulations for seconds-long black hole-neutron starmergers are performed to ob...
We perform a general-relativistic magnetohydrodynamics simulation for $\approx 30$ ms after merger o...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
We have studied the dynamics of an equal-mass magnetized neutron-star binary within a resistive magn...
New viscous neutrino-radiation hydrodynamics simulations are performed for accretion disks surroundi...
We explore the electromagnetic counterparts that will associate with binary neutron star mergers for...
We perform a general-relativistic neutrino-radiation magnetohydrodynamicsimulation of a one second-l...
We explore the electromagnetic counterparts that will associate with binary neutron star mergers for...
We report long-term simulations of black hole-neutron star binary mergers where the neutron star pos...
A differentially rotating hypermassive neutron star (HMNS) is a metastable object which can be forme...
Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that acc...
By performing new, long and numerically accurate general-relativistic simulations of magnetized, equ...
Long-term neutrino-radiation resistive-magnetohydrodynamics simulations in full general relativity a...
Long-term ideal and resistive magnetohydrodynamics (MHD) simulations in full general relativity are ...
Numerical-relativity simulations for seconds-long black hole-neutron starmergers are performed to ob...
We perform a general-relativistic magnetohydrodynamics simulation for $\approx 30$ ms after merger o...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
We have studied the dynamics of an equal-mass magnetized neutron-star binary within a resistive magn...
New viscous neutrino-radiation hydrodynamics simulations are performed for accretion disks surroundi...
We explore the electromagnetic counterparts that will associate with binary neutron star mergers for...
We perform a general-relativistic neutrino-radiation magnetohydrodynamicsimulation of a one second-l...
We explore the electromagnetic counterparts that will associate with binary neutron star mergers for...
We report long-term simulations of black hole-neutron star binary mergers where the neutron star pos...
A differentially rotating hypermassive neutron star (HMNS) is a metastable object which can be forme...
Magnetic fields are expected to play a key role in the dynamics and the ejection mechanisms that acc...
By performing new, long and numerically accurate general-relativistic simulations of magnetized, equ...