Black Hole Mergers from Star Clusters with Top-Heavy Initial Mass Functions
arXiv:2101.02217 · doi:10.3847/2041-8213/abd79c
Abstract
Recent observations of globular clusters (GCs) provide evidence that the stellar initial mass function (IMF) may not be universal, suggesting specifically that the IMF grows increasingly top-heavy with decreasing metallicity and increasing gas density. Non-canonical IMFs can greatly affect the evolution of GCs, mainly because the high end determines how many black holes (BHs) form. Here we compute a new set of GC models, varying the IMF within observational uncertainties. We find that GCs with top-heavy IMFs lose most of their mass within a few Gyr through stellar winds and tidal stripping. Heating of the cluster through BH mass segregation greatly enhances this process. We show that, as they approach complete dissolution, GCs with top-heavy IMFs can evolve into 'dark clusters' consisting of mostly BHs by mass. In addition to producing more BHs, GCs with top-heavy IMFs also produce many more binary BH (BBH) mergers. Even though these clusters are short-lived, mergers of ejected BBHs continue at a rate comparable to, or greater than, what is found for long-lived GCs with canonical IMFs. Therefore these clusters, although they are no longer visible today, could still contribute significantly to the local BBH merger rate detectable by LIGO/Virgo, especially for sources with higher component masses well into the BH mass gap. We also report that one of our GC models with a top-heavy IMF produces dozens of intermediate-mass black holes (IMBHs) with masses , including one with . Ultimately, additional gravitational wave observations will provide strong constraints on the stellar IMF in old GCs and the formation of IMBHs at high redshift.
8 pages, 4 figures, 1 table; accepted for publication to ApJL
References in corpus (21)
- GW190521: A Binary Black Hole Merger with a Total Mass of
- The 1% Concordance Hubble Constant
- Inspiral, merger and ringdown of unequal mass black hole binaries: a multipolar analysis
- The Effect of Pair-Instability Mass Loss on Black Hole Mergers
- MOCCA-SURVEY Database I: Coalescing Binary Black Holes Originating From Globular Clusters
- Formation and evolution of compact binaries in globular clusters: II. Binaries with neutron stars
- The Dynamical Evolution of Stellar Black Holes in Globular Clusters
- Black holes and core expansion in massive star clusters
- Stellar-mass black holes in young massive and open stellar clusters and their role in gravitational-wave generation
- The final mass and spin of black hole mergers
- On the Rate of Neutron Star Binary Mergers from Globular Clusters
- Why haven't loose globular clusters collapsed yet?
- Globular Cluster Systems in Brightest Cluster Galaxies: A Near-Universal Luminosity Function?
- The effect of stellar-mass black holes on the structural evolution of massive star clusters
- Millisecond Pulsars and Black Holes in Globular Clusters
- GW190412 as a Third-Generation Black Hole Merger from a Super Star Cluster
- Accreting black hole binaries in globular clusters
- Photometric determination of the mass accretion rates of pre-main sequence stars. V. Recent star formation in the 30 Dor nebula
- Demographics of neutron stars in young massive and open clusters
- The survival of star clusters with black hole subsystems
- The Lifetimes of Star Clusters Born with a Top-heavy IMF
Cited by in corpus (8)
- Evidence for a bottom-light initial mass function in massive star clusters
- White Dwarf Subsystems in Core-Collapsed Globular Clusters
- Intermediate-mass Black Holes on the Run from Young Star Clusters
- Multimass modelling of Milky Way globular clusters -- I. Implications on their stellar initial mass function above 1 M
- An elusive dark central mass in the globular cluster M4
- The Merger Rate of Black Holes in a Primordial Black Hole Cluster
- A study of 1000 galaxies with unusually young and massive stars in the SDSS: a search for hidden black holes
- Dynamical double black holes and their host cluster properties