Formation constraints indicate a black-hole accretor in 47 Tuc X9
arXiv:1801.00796 · doi:10.3847/2041-8213/aa9aeb
Abstract
The luminous X-ray binary 47 Tuc X9 shows radio and X-ray emission consistent with a stellar-mass black hole accreting from a carbon-oxygen white dwarf. Its location, in the core of the massive globular cluster 47 Tuc, hints at a dynamical origin. We assess the stability of mass transfer from a carbon-oxygen white dwarf onto compact objects of various masses, and conclude that for mass transfer to proceed stably the accretor must, in fact, be a black hole. Such systems can form dynamically by the collision of a stellar-mass black hole with a giant star. Tidal dissipation of energy in the giant's envelope leads to a bound binary with a pericentre separation less than the radius of the giant. An episode of common-envelope evolution follows, which ejects the giant's envelope. We find that the most likely target is a horizontal-branch star, and that a realistic quantity of subsequent dynamical hardening is required for the resulting binary to merge via gravitational wave emission. Observing one binary like 47 Tuc X9 in the Milky Way globular cluster system is consistent with the expected formation rate. The observed 6.8-day periodicity in the X-ray emission may be driven by eccentricity induced in the UCXB's orbit by a perturbing companion.
6 pages, 3 figures, published in ApJL
References in corpus (8)
- HST Proper Motions and Stellar Dynamics in the Core of the Globular Cluster 47 Tucanae
- Mass transfer in white dwarf-neutron star binaries
- The ultracompact nature of the black hole candidate X-ray binary 47 Tuc X9
- White Dwarf Luminosity and Mass Functions from Sloan Digital Sky Survey Spectra
- Stellar Exotica in 47 Tucanae
- Very Broad [O III]4959,5007 Emission from the NGC 4472 Globular Cluster RZ2109 and Implications for the Mass of Its Black Hole X-ray Source
- Population synthesis of ultracompact X-ray binaries in the Galactic Bulge
- [OIII] 5007 Emission from the Black-Hole X-ray Binary in a NGC 4472 Globular Cluster
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- Transients from ONe White-Dwarf - Neutron-Star/Black-Hole Mergers
- Black Hole Ultra-compact X-ray Binaries: Galactic Low-Frequency Gravitational Wave Sources
- Astrophysics with the Laser Interferometer Space Antenna
- An Extreme Ultra-Compact X-ray Binary in a Globular Cluster: Multi-Wavelength Observations of RZ2109 Explored in a Triple System Framework
- Gravitational wave energy spectral density properties from BPASS Galactic binary population in the Milky Way galaxy