A binary origin for the first isolated stellar-mass black hole detected with astrometric microlensing
arXiv:2203.08478 · doi:10.3847/2041-8213/acc076
Abstract
The Milky Way is believed to host hundreds of millions of quiescent stellar-mass black holes (BHs). In the last decade, some of these objects have been potentially uncovered via gravitational microlensing events. All these detections resulted in a degeneracy between the velocity and the mass of the lens. This degeneracy has been lifted, for the first time, with the recent astrometric microlensing detection of OB110462. However, two independent studies reported very different lens mass for this event. Sahu et al. (2022) inferred a lens mass of 7.1 1.3 Msun, consistent with a BH, while Lam et al. (2022) inferred 1.6-4.2 Msun, consistent with either a neutron star or a BH. Here, we study the landscape of isolated BHs formed in the field. In particular, we focus on the mass and center-of-mass speed of four sub-populations: isolated BHs from single-star origin, disrupted BHs of binary-star origin, main-sequence stars with a compact object companion, and double compact object mergers. Our model predicts that most ( 70%) isolated BHs in the Milky Way are of binary origin. However, non-interactions lead to most massive BHs ( 15-20 Msun) being predominantly of single origin. Under the assumption that OB110462 is a free-floating compact object we conclude that it is more likely to be a BH originally belonging to a binary system. Our results suggest that low-mass BH microlensing events can be useful to understand binary evolution of massive stars in the Milky Way, while high-mass BH lenses can be useful to probe single stellar evolution.
13 pages, 8 figures, 1 table. Accepted for publication in ApJL
References in corpus (19)
- The Gaia mission
- Binary interaction dominates the evolution of massive stars
- Kernel density estimation via diffusion
- Pulsational Pair-Instability Supernovae
- Formation of Double Neutron Star Systems
- Total recoil: the maximum kick from nonspinning black-hole binary inspiral
- Core-Collapse Supernova Explosion Theory
- An isolated mass gap black hole or neutron star detected with astrometric microlensing
- Re-visiting the relations: Galactic thin disc age-velocity dispersion relation
- Revealing black holes with Gaia
- Binary black hole merger: symmetry and the spin expansion
- Hunting Black Holes with Gaia
- PopSyCLE: A New Population Synthesis Code for Compact Object Microlensing Events
- Systematic errors as a source of mass discrepancy in black hole microlensing event OGLE-2011-BLG-0462
- Uncovering astrometric black hole binaries with massive main-sequence companions with Gaia
- Fallback supernova assembly of heavy binary neutron stars and light black hole-neutron star pairs and the common stellar ancestry of GW190425 and GW200115
- Binary Source Microlensing Event OGLE-2016-BLG-0733: Interpretation of A Long-term Asymmetric Perturbation
- Weighing the Darkness III: How Gaia Could, but Probably Won't, Astrometrically Detect Free-Floating Black Holes
- Constraining Black Hole Natal Kicks with Astrometric Microlensing