Measuring the distance and mass of galactic core-collapse supernovae using neutrinos
arXiv:2101.10624
Abstract
Neutrinos from a Galactic core-collapse supernova will be measured by neutrino detectors minutes to days before an optical signal reaches Earth. We present a novel calculation showing the ability of current and near-future neutrino detectors to make fast predictions of the progenitor distance and place constraints on the zero-age main sequence mass in order to inform the observing strategy for electromagnetic follow-up. We show that for typical Galactic supernovae, the distance can be constrained with an uncertainty of 5\% using IceCube or Hyper-K and, furthermore, the zero-age main sequence mass can be constrained for extremal values of compactness.
7 pages + 6 pages of supplemental information, submitted to PRL, data and analysis scripts at https://doi.org/10.5281/zenodo.4467495