From the 1 of 5 linked papers with an AI index.
5 papers
Binary neutron star populations across cosmic time: the impact of binary stellar evolution uncertainties
Mathieu Venet, Irina Dvorkin
The paper examines how uncertainties in binary stellar evolution—especially common‑envelope efficiency and natal kick prescriptions—affect the formation efficiency and cosmological…
Probing the redshift evolution and sub-populations of binary neutron stars with the Einstein Telescope
Alexandre Toubiana, Irina Dvorkin
The formation channels of binary neutron stars (BNSs) currently remain uncertain, but important information can be gathered by observing their mergers with gravitational-wave detec…
The Science of the Einstein Telescope
Adrian Abac, Raul Abramo, Simone Albanesi +485
Einstein Telescope (ET) is the European project for a gravitational-wave (GW) observatory of third-generation. In this paper we present a comprehensive discussion of its science ob…
Postmerger: a new and dominant contribution to the gravitational-wave background from binary neutron stars
Léonard Lehoucq, Irina Dvorkin, Luciano Rezzolla
The stochastic gravitational-wave background (SGWB) generated by the inspiral and merger of binary neutron stars is traditionally modelled assuming that the inspiral is promptly fo…
Evolutionary tracks of binary neutron star progenitors across cosmic times
Clément Pellouin, Irina Dvorkin, Léonard Lehoucq
Recent discoveries of gravitational wave sources have advanced our knowledge about the formation of compact object binaries. At present, many questions about the stellar origins of…