arXiv · 2207.13488
Temperature Effects on Core g-modes of Neutron Stars
Abstract
Neutron stars provide a unique physical laboratory to study the properties of matter at high density. We study a diagnostic of the composition of high-density matter, namely, g-mode oscillations, which are driven by buoyancy forces. These oscillations can be excited by tidal forces and couple to gravitational waves. We extend prior results for the g-mode spectrum of cold neutron star matter to temperatures that are expected to be achieved in neutron star mergers using a parameterization for finite-temperature effects recently proposed by Raithel, \"Ozel and Psaltis. We find that the g-modes of canonical mass neutron stars ($\approx$1.4$M_{\odot}$) are suppressed at high temperature, and core $g$-modes are supported only in the most massive ($\geq $2$M_{\odot}$) of hot neutron stars.
Explore related subjects
Keep this discovery
Nicholas Lozano, Vinh Tran, Prashanth Jaikumar. 2022-07-17. Temperature Effects on Core g-modes of Neutron Stars. https://doi.org/10.3390/galaxies10040079
Cite the original work for its findings. Save a collection to share your selection of sources.