169 citations · 235 across the 3 of their papers we have counts for
7 papers · 1 filter
On the Deconfinement Phase Transition in Neutron-Star Mergers
Elias R. Most, L. Jens Papenfort, Veronica Dexheimer +3
We study in detail the nuclear aspects of a neutron-star merger in which deconfinement to quark matter takes place. For this purpose, we make use of the Chiral Mean Field (CMF) mod…
General relativistic resistive magnetohydrodynamics with robust primitive variable recovery for accretion disk simulations
Bart Ripperda, Fabio Bacchini, Oliver Porth +6
Recent advances in black hole astrophysics, particularly the first visual evidence of a supermassive black hole at the center of the galaxy M87 by the Event Horizon Telescope (EHT)…
Beyond second-order convergence in simulations of magnetised binary neutron stars with realistic microphysics
Elias R. Most, L. Jens Papenfort, Luciano Rezzolla
We investigate the impact of using high-order numerical methods to study the merger of magnetised neutron stars with finite-temperature microphysics and neutrino cooling in full ge…
Constrained transport and adaptive mesh refinement in the Black Hole Accretion Code
Hector Olivares, Oliver Porth, Jordy Davelaar +5
Worldwide very long baseline radio interferometry arrays are expected to obtain horizon-scale images of supermassive black hole candidates as well as of relativistic jets in severa…
Neutron-Star-Merger Equation of State
Veronica Dexheimer, Constantinos Constantinou, Elias R. Most +5
In this work, we discuss the dense matter equation of state (EOS) for the extreme range of conditions encountered in neutron stars and their mergers. The calculation of the propert…
Optimal neutron-star mass ranges to constrain the equation of state of nuclear matter with electromagnetic and gravitational-wave observations
Lukas R. Weih, Elias R. Most, Luciano Rezzolla
Exploiting a very large library of physically plausible equations of state (EOSs) containing more than members and yielding more than stellar models, we conduct a…