Supermassive Black Hole Binaries: Environment and Galaxy Host Properties of PTA and eLISA sources
Eva Mart\'inez Palafox, Octavio Valenzuela, Pedro Col\'in, Stefan, Gottl\"ober

TL;DR
This paper models the evolution and properties of supermassive black hole binaries, predicting their host galaxy characteristics and electromagnetic signatures to aid in multimessenger detection by PTA and eLISA.
Contribution
It introduces a coupled dynamical and cosmological model that relaxes previous assumptions, providing detailed predictions of host galaxy properties and EM signatures of SMBH binaries.
Findings
Bimodal distribution of host galaxy properties for PTA and eLISA sources
Presence of nearby EM-detectable SMBH binaries in the universe
Weak dependence of host properties on binary occupation, linked to BH origin
Abstract
Supermassive black hole (BH) binaries would comprise the strongest sources of gravitational waves (GW) once they reach <<1 pc separations, for both pulsar timing arrays (PTAs) and space based (SB) detectors. While BH binaries coalescences constitute a natural outcome of the cosmological standard model and galaxy mergers, their dynamical evolution is still poorly understood and therefore their abundances at different stages. We use a dynamical model for the decay of BH binaries coupled with a cosmological simulation and semi-empirical approaches to the occupation of haloes by galaxies and BHs, in order to follow the evolution of the properties distribution of galaxies hosting BH binaries candidates to decay due to GWs emission. Our models allow us to relax simplifying hypothesis about the binaries occupation in galaxies and their mass, as well as redshift evolution. Following previously…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Radio Astronomy Observations and Technology · Galaxies: Formation, Evolution, Phenomena
