English

Growing the Intermediate-mass Black Hole in Omega Centauri

High Energy Astrophysical Phenomena 2025-08-22 v2 Astrophysics of Galaxies

Abstract

The recent detection of fast-moving stars in the core of Omega Centauri (ω\omega Cen), the most massive globular cluster (GC) in the Milky Way, has provided strong evidence for the presence of an intermediate-mass black hole (IMBH). As ω\omega Cen, is likely the accreted nucleus of a dwarf galaxy, this IMBH also represents a unique opportunity to study BH seeding mechanisms and their potential role in the formation of supermassive BHs. We present Monte Carlo NN-body models of ω\omega Cen with detailed treatments for the loss cone dynamics involving stars, binaries, and compact objects. Starting with BH seeds of 5005000M500-5000 \, M_{\odot} (consistent with runaway collisions of massive stars), our cluster models grow IMBHs with masses of 50,000M\sim50{,}000 \, M_{\odot} after 12 Gyr, while successfully reproducing the present-day surface brightness and velocity dispersion profiles of ω\omega Cen. We find a population of fast stars similar to those observed in the core of ω\omega Cen, with the fastest stars originating from binaries that were tidally disrupted by the IMBH. The IMBH growth is primarily driven by mergers with 3040M30-40 \, M_{\odot} BHs, suggesting a present-day IMBH-BH merger rate of (48)×108 yr1\sim(4-8)\times10^{-8}~\rm{yr}^{-1} in ω\omega Cen-like GCs. Our models also predict a similar rate of tidal disruption events (5×108 yr1\sim5\times10^{-8}~\rm{yr}^{-1}) which, depending on the frequency of ω\omega Cen-like GCs per galaxy, may represent anywhere from 0.1%0.1\% to 10%10\% of the observed TDE rate.

Keywords

Cite

@article{arxiv.2507.06316,
  title  = {Growing the Intermediate-mass Black Hole in Omega Centauri},
  author = {Elena González Prieto and Carl L. Rodriguez and Tomás Cabrera},
  journal= {arXiv preprint arXiv:2507.06316},
  year   = {2025}
}

Comments

13 pages (Appendix included), 10 figures, Accepted to ApJL. Comments welcome

R2 v1 2026-07-01T03:52:16.219Z