English

The boring history of Gaia BH3 from isolated binary evolution

Astrophysics of Galaxies 2024-10-16 v3 High Energy Astrophysical Phenomena Solar and Stellar Astrophysics

Abstract

Gaia BH3 is the first observed dormant black hole (BH) with a mass of 30\approx{30} M_\odot and represents the first confirmation that such massive BHs are associated with metal-poor stars. Here, we explore the isolated binary formation channel for Gaia BH3 focusing on the old and metal-poor stellar population of the Milky Way halo. We use the MIST stellar models and our open-source population synthesis code SEVN to evolve 5.6×1085.6 \times 10^8 binaries exploring 20 sets of parameters. We find that systems like Gaia BH3 form preferentially from binaries initially composed of a massive star (406040-60 M_\odot) and a low mass companion (<1<1 M_\odot) in a wide (P>103P>10^3 days) and eccentric orbit (e>0.6e>0.6). Such progenitor binary stars do not undergo any Roche-lobe overflow episode during their entire evolution, so that the final orbital properties of the BH-star system are determined at the core collapse of the primary star. Low natal kicks (\lesssim 10~km/s) significantly favour the formation of Gaia BH3-like systems, but high velocity kicks up to 220\approx 220 km/s are also allowed. We estimate the formation efficiency for Gaia BH3-like systems in old (t>10t>10 Gyr) and metal-poor (Z<0.01Z<0.01) populations to be 4×108\sim 4 \times 10^{-8} M1_\odot^{-1} (for our fiducial model), representing 3%\sim 3\% of the whole simulated BH-star population. We expect up to 4000\approx 4000 BH-star systems in the Galactic halo formed through isolated evolution, of which 100\approx 100 are compatible with Gaia BH3-like. Given the density profile of the Galactic halo we do not expect more than one at the observed distance of Gaia BH3. Our models show that, even if it was born inside a stellar cluster, Gaia BH3 is compatible with a primordial binary star that escaped from its parent cluster without experiencing significant dynamical interactions.

Keywords

Cite

@article{arxiv.2404.17568,
  title  = {The boring history of Gaia BH3 from isolated binary evolution},
  author = {Giuliano Iorio and Stefano Torniamenti and Michela Mapelli and Marco Dall'Amico and Alessandro A. Trani and Sara Rastello and Cecilia Sgalletta and Stefano Rinaldi and Guglielmo Costa and Bera A. Dhal-Lahtinen and Gaston J. Escobar and Erika Korb and M. Paola Vaccaro and Elena Lacchin and Benedetta Mestichelli and Ugo Niccolò di Carlo and Mario Spera and Manuel Arca Sedda},
  journal= {arXiv preprint arXiv:2404.17568},
  year   = {2024}
}

Comments

Accepted for publication in A&A. The produced datasets are publicly available in Zenodo. I Initiail conditions and run scripts: https://zenodo.org/records/11617742; IIA simulation outcomes: https://zenodo.org/records/11992265; IIB simulation outcomes, different metallicities: https://zenodo.org/records/12188369; IIC simulation outcomes, fiducial 1E8, https://zenodo.org/records/12189734