Evolution of dwarf galaxies hosting GW150914-like events
arXiv:1901.04494 · doi:10.1093/mnras/stz170
Abstract
Here we present a detailed analysis of the properties and evolution of different dwarf galaxies, candidate to host the coalescence of black hole binary systems (BHB) generating GW150914-like events. By adopting a novel theoretical framework coupling the binary population synthesis code \texttt{SeBa} with the Galaxy formation model \texttt{GAMESH}, we can investigate the detailed evolution of these objects in a well resolved cosmological volume of 4~cMpc, having a Milky Way-like (MW) galaxy forming at its center. We identify three classes of interesting candidate galaxies: MW progenitors, dwarf satellites and dwarf galaxies evolving in isolation. We find that: (i) despite differences in individual histories and specific environments the candidates reduce to only nine representative galaxies; (ii) among them, merges into the MW halo progenitors by the redshift of the expected signal, while the remaining dwarfs are found as isolated or as satellites of the MW and their evolution is strongly shaped by both peculiar dynamical history and environmental feedback; (iii) a stringent condition for the environments where GW150914-like binaries can form comes from a combination of the accretion history of their DM halos and the radiative feedback in the high redshift universe; (iv) by comparing with the observed catalogues from DGS and ALLSMOG surveys we find two observed dwarfs respecting the properties predicted by our model. We finally note how the present analysis opens the possibility to build future strategies for host galaxy identification.
MNRAS in press. Replaced with correct captions in figures A1 and A2 of the Appendix
References in corpus (24)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence
- UV Star Formation Rates in the Local Universe
- GW170608: Observation of a 19-solar-mass Binary Black Hole Coalescence
- On the mass-to-light ratio of the local Galactic disc and the optical luminosity of the Galaxy
- Very massive stars, pair-instability supernovae and intermediate-mass black holes with the SEVN code
- Merging black hole binaries: the effects of progenitor's metallicity, mass-loss rate and Eddington factor
- Distinguishing Spin-Aligned and Isotropic Black Hole Populations With Gravitational Waves
- The cosmic merger rate of stellar black hole binaries from the Illustris simulation
- ZFOURGE/CANDELS: On the Evolution of M* Galaxy Progenitors from z=3 to 0.5
- Low metallicity and ultra-luminous X-ray sources in the Cartwheel galaxy
- Coevolution of metallicity and star formation in galaxies to z=3.7: I. A fundamental plane
- The final data release of ALLSMOG: a survey of CO in typical local low-M* star-forming galaxies
- Where does galactic dust come from?
- A Bayesian approach to multi-messenger astronomy: Identification of gravitational-wave host galaxies
- The effects of host galaxy properties on merging compact binaries detectable by LIGO
- Galaxy formation with radiative and chemical feedback
- Finding the One: Identifying the Host Galaxies of Gravitational-Wave Sources
- Roche-lobe overflow systems powered by black holes in young star clusters: the importance of dynamical exchanges
- Constraining the mass of the Local Group
- GW150914: First search for the electromagnetic counterpart of a gravitational-wave event by the TOROS collaboration
- Liverpool Telescope follow-up of candidate electromagnetic counterparts during the first run of Advanced LIGO
- The Contribution Of Outer HI Disks To The Merging Binary Black Hole Population
Cited by in corpus (7)
- The properties of merging black holes and neutron stars across cosmic time
- Host galaxies of merging compact objects: mass, star formation rate, metallicity and colours
- Mass and star formation rate of the host galaxies of compact binary mergers across cosmic time
- Unveiling early black hole growth with multi-frequency gravitational wave observations
- Measuring the viscosity of dark matter with strongly lensed gravitational waves
- Cosmic archaeology with massive stellar black hole binaries
- Where binary neutron stars merge: predictions from IllustrisTNG