English

A Sun-like star orbiting a black hole

Solar and Stellar Astrophysics 2023-03-02 v3 Astrophysics of Galaxies

Abstract

We report discovery of a bright, nearby (G=13.8;d=480pcG = 13.8;\,\,d = 480\,\rm pc) Sun-like star orbiting a dark object. We identified the system as a black hole candidate via its astrometric orbital solution from the Gaia mission. Radial velocities validated and refined the Gaia solution, and spectroscopy ruled out significant light contributions from another star. Joint modeling of radial velocities and astrometry constrains the companion mass to M2=9.62±0.18MM_2 = 9.62\pm 0.18\,M_{\odot}. The spectroscopic orbit alone sets a minimum companion mass of M2>5MM_2>5\,M_{\odot}; if the companion were a 5M5\,M_{\odot} star, it would be 500500 times more luminous than the entire system. These constraints are insensitive to the mass of the luminous star, which appears as a slowly-rotating G dwarf (Teff=5850KT_{\rm eff}=5850\,\rm K, logg=4.5\log g = 4.5, M=0.93MM=0.93\,M_{\odot}), with near-solar metallicity ([Fe/H]=0.2\rm [Fe/H] = -0.2) and an unremarkable abundance pattern. We find no plausible astrophysical scenario that can explain the orbit and does not involve a black hole. The orbital period, Porb=185.6P_{\rm orb}=185.6 days, is longer than that of any known stellar-mass black hole binary. The system's modest eccentricity (e=0.45e=0.45), high metallicity, and thin-disk Galactic orbit suggest that it was born in the Milky Way disk with at most a weak natal kick. How the system formed is uncertain. Common envelope evolution can only produce the system's wide orbit under extreme and likely unphysical assumptions. Formation models involving triples or dynamical assembly in an open cluster may be more promising. This is the nearest known black hole by a factor of 3, and its discovery suggests the existence of a sizable population of dormant black holes in binaries. Future Gaia releases will likely facilitate the discovery of dozens more.

Keywords

Cite

@article{arxiv.2209.06833,
  title  = {A Sun-like star orbiting a black hole},
  author = {Kareem El-Badry and Hans-Walter Rix and Eliot Quataert and Andrew W. Howard and Howard Isaacson and Jim Fuller and Keith Hawkins and Katelyn Breivik and Kaze W. K. Wong and Antonio C. Rodriguez and Charlie Conroy and Sahar Shahaf and Tsevi Mazeh and Frédéric Arenou and Kevin B. Burdge and Dolev Bashi and Simchon Faigler and Daniel R. Weisz and Rhys Seeburger and Silvia Almada Monter and Jennifer Wojno},
  journal= {arXiv preprint arXiv:2209.06833},
  year   = {2023}
}

Comments

30 pages, 15 figures, 1-2 black holes. Accepted to MNRAS

R2 v1 2026-06-28T01:18:38.065Z