paper

A New Kilohertz Gravitational-Wave Feature from Rapidly Rotating Core-Collapse Supernovae

arXiv:2310.20411

Abstract

We present self-consistent three-dimensional core-collapse supernova simulations of a rotating progenitor model with various initial angular velocities from to rad s using a smoothed particle hydrodynamics code, SPHYNX, and a grid-based hydrodynamics code, FLASH. We identify two strong gravitational-wave features, with peak frequencies of Hz and kHz in the first ms postbounce. We demonstrate that these two features are associated with the deformation from the proto-neutron star (PNS) modulation induced by the low- instability, regardless of the simulation code. The Hz feature is present in models with an initial angular velocity between and rad s, while the kHz feature is present only in a narrower range, from to rad s. We show that the kHz signal originates from the high-density inner core of the PNS, and the deformation triggers a strong asymmetric distribution of electron anti-neutrinos. In addition to the Hz and kHz features, we also observe one weaker but noticeable gravitational-wave feature from higher-order modes in the range between and rad s. Its peak frequency is around Hz initially and gradually increases to Hz. Therefore, in addition to the gravitational bounce signal, the detection of the Hz, kHz, the higher-order mode, and even the related asymmetric emission of neutrinos, could provide additional diagnostics to estimate the initial angular velocity of a collapsing core.

20 pages, 14 figures,. Accepted for publication in the Astrophysical Journal