arXiv:2609.29761·v1·General Relativity and Quantum Cosmology
Multi-messenger and multi-band signal from first-order phase transitions in proto-neutron stars
Christian Ecker · Mauro Giliberti · Luciano Rezzolla
Abstract
A first-order phase transition (PT) alters a compact star on two scales: globally, via growth of a quark-matter core, and microscopically, via collision of quark bubbles, driving a simultaneous gravitational-wave (GW) emission in the kHz and MHz bands. Using a constrained ensemble of model-agnostic equations of state, we follow the accretion-driven evolution of proto-neutron stars through the PT and compute the resulting multi-band GW signal. The correlations found between the kHz emission and the MHz burst could help constrain nuclear matter and the physics of the PT. A delayed neutrino burst should accompany the signal, with the delay set by the details of the PT, thus providing a prime multi-messenger source.
Comments: 10 pages, 7 figures + Supplemental Material