Evidence of a Decreased Binary Fraction for Massive Stars Within 20 Milliparsecs of the Supermassive Black Hole at the Galactic Center
arXiv:2303.16977 · doi:10.3847/1538-4357/acc93e
Abstract
We present the results of the first systematic search for spectroscopic binaries within the central 2 x 3 arcsec around the supermassive black hole at the center of the Milky Way galaxy. This survey is based primarily on over a decade of adaptive optics-fed integral-field spectroscopy (R4000), obtained as part of the Galactic Center Orbits Initiative at Keck Observatory, and has a limiting '-band magnitude of 15.8, which is at least 4 magnitudes deeper than previous spectroscopic searches for binaries at larger radii within the central nuclear star cluster. From this primary dataset, over 600 new radial velocities are extracted and reported, increasing by a factor of 3 the number of such measurements. We find no significant periodic signals in our sample of 28 stars, of which 16 are massive, young (main-sequence B) stars and 12 are low-mass, old (M and K giant) stars. Using Monte Carlo simulations, we derive upper limits on the intrinsic binary star fraction for the young star population at 47% (at 95% confidence) located 20 mpc from the black hole. The young star binary fraction is significantly lower than that observed in the field (70%). This result is consistent with a scenario in which the central supermassive black hole drives nearby stellar binaries to merge or be disrupted and may have important implications for the production of gravitational waves and hypervelocity stars.
Accepted by ApJ. 22 pages, 14 figures
References in corpus (17)
- Array Programming with NumPy
- The NumPy array: a structure for efficient numerical computation
- Binary interaction dominates the evolution of massive stars
- An Update on Monitoring Stellar Orbits in the Galactic Center
- Starbursts near supermassive black holes: young stars in the Galactic Center, and gravitational waves in LISA band
- An Improved Distance and Mass Estimate for Sgr A* from a Multistar Orbit Analysis
- Twelve years of spectroscopic monitoring in the Galactic Center: the closest look at S-stars near the black hole
- Detection of Galactic Center source G2 at 3.8 m during periapse passage
- The Fate of Binaries in the Galactic Center: The Mundane and the Exotic
- A population of dust-enshrouded objects orbiting the Galactic black hole
- Photometric Stellar Variability in the Galactic Center
- Explaining the Orbits of the Galactic Center S-Stars
- Origin of the S Stars in the Galactic Center
- SPISEA: A Python-Based Simple Stellar Population Synthesis Code for Star Clusters
- Hypervelocity stars from young stellar clusters in the Galactic Centre
- Massive binary star mergers in galactic nuclei: implications for blue stragglers, binary S-stars and gravitational waves
- Tidal breakup of triple stars in the Galactic Centre
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