An Isolated Stellar-Mass Black Hole Detected Through Astrometric Microlensing
arXiv:2201.13296 · doi:10.3847/1538-4357/ac739e
Abstract
We report the first unambiguous detection and mass measurement of an isolated stellar-mass black hole (BH). We used the Hubble Space Telescope (HST) to carry out precise astrometry of the source star of the long-duration (t_E~270 days), high-magnification microlensing event MOA-2011-BLG-191/OGLE-2011-BLG-0462 (hereafter designated as MOA-11-191/OGLE-11-462), in the direction of the Galactic bulge. HST imaging, conducted at eight epochs over an interval of six years, reveals a clear relativistic astrometric deflection of the background star's apparent position. Ground-based photometry of MOA-11-191/OGLE-11-462 shows a parallactic signature of the effect of the Earth's motion on the microlensing light curve. Combining the HST astrometry with the ground-based light curve and the derived parallax, we obtain a lens mass of 7.1 +/- 1.3 Msun and a distance of 1.58 +/- 0.18 kpc. We show that the lens emits no detectable light, which, along with having a mass higher than is possible for a white dwarf or neutron star, confirms its BH nature. Our analysis also provides an absolute proper motion for the BH. The proper motion is offset from the mean motion of Galactic-disk stars at similar distances by an amount corresponding to a transverse space velocity of ~45 km/s, suggesting that the BH received a 'natal kick' from its supernova explosion. Previous mass determinations for stellar-mass BHs have come from radial-velocity measurements of Galactic X-ray binaries, and from gravitational radiation emitted by merging BHs in binary systems in external galaxies. Our mass measurement is the first for an isolated stellar-mass BH using any technique.
37 pages, Published in ApJ
References in corpus (21)
- X-ray Properties of Black-Hole Binaries
- Binary interaction dominates the evolution of massive stars
- Trigonometric Parallaxes Of High-Mass Star Forming Regions: Our View Of The Milky Way
- Microlens OGLE-2005-BLG-169 Implies Cool Neptune-Like Planets are Common
- Cygnus X-1 contains a 21-solar mass black hole -- implications for massive star winds
- A 15.65 solar mass black hole in an eclipsing binary in the nearby spiral galaxy Messier 33
- The updated BaSTI stellar evolution models and isochrones: II. alpha-enhanced calculations
- On IC 10 X-1, the Most Massive Known Stellar-Mass Black Hole
- An isolated mass gap black hole or neutron star detected with astrometric microlensing
- The M31 Velocity Vector. I. Hubble Space Telescope Proper Motion Measurements
- Relativistic deflection of background starlight measures the mass of a nearby white dwarf star
- RoboNet-II: Follow-up observations of microlensing events with a robotic network of telescopes
- OGLE-III Microlensing Events and the Structure of the Galactic Bulge
- An anomaly detector with immediate feedback to hunt for planets of Earth mass and below by microlensing
- A Search for Stellar-Mass Black Holes via Astrometric Microlensing
- Proper Motions and Trajectories for 16 Extreme Runaway and Hypervelocity Stars
- Uncovering astrometric black hole binaries with massive main-sequence companions with Gaia
- Microlensing constraints on the mass of single stars from HST astrometric measurements
- Radio Emission from Accreting Isolated Black Holes in Our Galaxy
- The Wolf-Rayet + Black Hole Binary NGC 300 X-1: What is the Mass of the Black Hole?
- Constraining Black Hole Natal Kicks with Astrometric Microlensing