Infalling Young Clusters in the Galactic Centre: implications for IMBHs and young stellar populations
arXiv:1701.07440 · doi:10.1093/mnras/stx296
Abstract
The central parsec of the Milky Way hosts two puzzlingly young stellar populations, a tight isotropic distribution of B stars around SgrA* (the S-stars) and a disk of OB stars extending to ~0.5pc. Using a modified version of Sverre Aarseth's direct summation code NBODY6 we explore the scenario in which a young star cluster migrates to the Galactic Centre within the lifetime of the OB disk population via dynamical friction. We find that star clusters massive and dense enough to reach the central parsec form a very massive star via physical collisions on a mass segregation timescale. We follow the evolution of the merger product using the most up to date, yet conservative, mass loss recipes for very massive stars. Over a large range of initial conditions, we find that the very massive star expels most of its mass via a strong stellar wind, eventually collapsing to form a black hole of mass 20 - 400 M_Sun, incapable of bringing massive stars to the Galactic Centre. No massive intermediate mass black hole can form in this scenario. The presence of a star cluster in the central ~10 pc within the last 15 Myr would also leave a ~2 pc ring of massive stars, which is not currently observed. Thus, we conclude that the star cluster migration model is highly unlikely to be the origin of either young population, and in-situ formation models or binary disruptions are favoured.
15 pages, 11 figures, 4 tables. Resubmitted to MNRAS after responding to minor comments from the referee
Cited by in corpus (15)
- Concurrent formation of supermassive stars and globular clusters: implications for early self-enrichment
- Gravitational Waves and Intermediate-mass Black Hole Retention in Globular Clusters
- Gravitational wave sources from inspiralling globular clusters in the Galactic Centre and similar environments
- A hypervelocity star with a Magellanic origin
- Formation of super-massive black holes in galactic nuclei I: delivering seed intermediate-mass black holes in massive stellar clusters
- The secular tidal disruption of stars by low-mass Super Massive Black Holes secondaries in galactic nuclei
- Supernova Kicks and Dynamics of Compact Remnants in the Galactic Centre
- Binary intermediate-mass black hole mergers in globular clusters
- Star cluster disruption by a massive black hole binary
- Formation of supermassive black holes in galactic nuclei II: retention and growth of seed intermediate-mass black holes
- Intermediate-Mass Ratio Inspirals in Galactic Nuclei
- The mass budget for intermediate-mass black holes in dense star clusters
- Astrometric Detection of Intermediate-Mass Black Holes At the Galactic Centre
- The Evaporating Massive Embedded Stellar Cluster IRS 13 Close to Sgr A*. II. Kinematic structure
- Resonant Dynamical Friction in Nuclear Star Clusters: Rapid Alignment of an Intermediate-mass Black Hole with a Stellar Disk