The remnant resulting from the merger of two neutron stars produces neutrinos in copious amounts. In this paper we present the neutrino emission results obtained via Newtonian, high-resolution simulations of the coalescence event. These simulations use three-dimensional smoothed particle hydrodynamics together with a nuclear, temperature dependent equation of state and a multi-flavour neutrino leakage scheme. We present the details of our scheme, discuss the neutrino emission results from a neutron star coalescence and compare them to the core-collapse supernova case where neutrino emission has been studied for several decades. The average neutrino energies are similar to those in the supernova case, but contrary to the latter, the luminosi...
Neutron star mergers are among the most promising sources of gravitational waves for advanced ground...
Three-dimensional hydrodynamical, Newtonian calculations of the coalescence of equal-mass binary neu...
Neutrinos are copiously emitted by neutron star mergers, due to the high temperatures reached by den...
Binary neutron star mergers are promising sources of gravitational waves for ground-based detectors ...
Three-dimensional hydrodynamical, Newtonian calculations of the coalescence of equal-mass binary neu...
Binary neutron star mergers are promising sources of gravitational waves for ground-based detectors ...
A nascent neutron star resulting from stellar collapse is a prodigious source of neutrinos of all fl...
We present Sedonu, a new open source, steady-state, special relativistic Monte Carlo (MC) neutrino t...
We present VULCAN/2D multigroup flux-limited-diffusion radiation-hydrodynamics simulations of binary...
The neutrino energy emission rate due to formation of Cooper pairs of neutrons and protons in the su...
We present a first exploration of the results of neutron star-black hole mergers using black hole ma...
We present Sedonu, a new open source, steady-state, special relativistic Monte Carlo (MC) neutrino t...
We study neutrino emission from the remnant of an inspiraling binary neutron star following coalesce...
We present a first exploration of the results of neutron star-black hole mergers using black hole ma...
Neutrinos are copiously emitted by neutron star mergers, due to the high temperatures reached by den...
Neutron star mergers are among the most promising sources of gravitational waves for advanced ground...
Three-dimensional hydrodynamical, Newtonian calculations of the coalescence of equal-mass binary neu...
Neutrinos are copiously emitted by neutron star mergers, due to the high temperatures reached by den...
Binary neutron star mergers are promising sources of gravitational waves for ground-based detectors ...
Three-dimensional hydrodynamical, Newtonian calculations of the coalescence of equal-mass binary neu...
Binary neutron star mergers are promising sources of gravitational waves for ground-based detectors ...
A nascent neutron star resulting from stellar collapse is a prodigious source of neutrinos of all fl...
We present Sedonu, a new open source, steady-state, special relativistic Monte Carlo (MC) neutrino t...
We present VULCAN/2D multigroup flux-limited-diffusion radiation-hydrodynamics simulations of binary...
The neutrino energy emission rate due to formation of Cooper pairs of neutrons and protons in the su...
We present a first exploration of the results of neutron star-black hole mergers using black hole ma...
We present Sedonu, a new open source, steady-state, special relativistic Monte Carlo (MC) neutrino t...
We study neutrino emission from the remnant of an inspiraling binary neutron star following coalesce...
We present a first exploration of the results of neutron star-black hole mergers using black hole ma...
Neutrinos are copiously emitted by neutron star mergers, due to the high temperatures reached by den...
Neutron star mergers are among the most promising sources of gravitational waves for advanced ground...
Three-dimensional hydrodynamical, Newtonian calculations of the coalescence of equal-mass binary neu...
Neutrinos are copiously emitted by neutron star mergers, due to the high temperatures reached by den...