English

Host galaxies of merging compact objects: mass, star formation rate, metallicity and colours

Astrophysics of Galaxies 2019-05-29 v2 Cosmology and Nongalactic Astrophysics High Energy Astrophysical Phenomena Solar and Stellar Astrophysics

Abstract

Characterizing the properties of the host galaxies of merging compact objects provides essential clues to interpret current and future gravitational-wave detections. Here, we investigate the stellar mass, star formation rate (SFR), metallicity and colours of the host galaxies of merging compact objects in the local Universe, by combining the results of MOBSE population-synthesis models together with galaxy catalogs from the EAGLE simulation. We predict that the stellar mass of the host galaxy is an excellent tracer of the merger rate per galaxy nGW{\rm n}_{\rm GW} of double neutron stars (DNSs), double black holes (DBHs) and black hole-neutron star binaries (BHNSs). We find a significant correlation also between nGW{\rm n}_{\rm GW} and SFR. As a consequence, nGW{\rm n}_{\rm GW} correlates also with the rr-band luminosity and with the grg-r colour of the host galaxies. Interestingly, 60\gtrsim{}60 %, 64\gtrsim{}64 % and 73\gtrsim{}73 % of all the DNSs, BHNSs and DBHs merging in the local Universe lie in early-type galaxies, such as NGC 4993. We predict a local DNS merger rate density of 238 Gpc3 yr 1\sim{}238~{\rm Gpc}^{-3}~{\rm yr}~^{-1} and a DNS merger rate 16121\sim{}16-121 Myr1^{-1} for Milky Way-like galaxies. Thus, our results are consistent with both the DNS merger rate inferred from GW170817 and the one inferred from Galactic DNSs.

Keywords

Cite

@article{arxiv.1903.00083,
  title  = {Host galaxies of merging compact objects: mass, star formation rate, metallicity and colours},
  author = {M. Celeste Artale and Michela Mapelli and Nicola Giacobbo and Nadeen B. Sabha and Mario Spera and Filippo Santoliquido and Alessandro Bressan},
  journal= {arXiv preprint arXiv:1903.00083},
  year   = {2019}
}

Comments

14 pages, 10 figures. Accepted for publication in MNRAS. Comments welcome!