Multimass modelling of Milky Way globular clusters -- I. Implications on their stellar initial mass function above 1 M
arXiv:2303.01637 · doi:10.1093/mnras/stad1254
Abstract
The distribution of stars and stellar remnants (white dwarfs, neutron stars, black holes) within globular clusters holds clues about their formation and long-term evolution, with important implications for their initial mass function (IMF) and the formation of black hole mergers. In this work, we present best-fitting multimass models for 37 Milky Way globular clusters, which were inferred from various datasets, including proper motions from Gaia EDR3 and HST, line-of-sight velocities from ground-based spectroscopy and deep stellar mass functions from HST. We use metallicity dependent stellar evolution recipes to obtain present-day mass functions of stars and remnants from the IMF. By dynamically probing the present-day mass function of all objects in a cluster, including the mass distribution of remnants, these models allow us to explore in detail the stellar (initial) mass functions of a large sample of Milky Way GCs. We show that, while the low-mass mass function slopes are strongly dependent on the dynamical age of the clusters, the high-mass slope () is not, indicating that the mass function in this regime has generally been less affected by dynamical mass loss. Examination of this high-mass mass function slope suggests an IMF in this mass regime consistent with a Salpeter IMF is required to reproduce the observations. This high-mass IMF is incompatible with a top-heavy IMF, as has been proposed recently. Finally, based on multimass model fits to our sample of Milky Way GCs, no significant correlation is found between the high-mass IMF slope and cluster metallicity.
21 pages, 10 figures, MNRAS accepted
References in corpus (25)
- Array Programming with NumPy
- The Dartmouth Stellar Evolution Database
- A systematic variation of the stellar initial mass function in early-type galaxies
- The ACS Survey of Galactic Globular Clusters. I. Overview and Clusters Without Previous HST Photometry
- Accurate distances to Galactic globular clusters through a combination of Gaia EDR3, HST and literature data
- The Dynamical Evolution of Stellar Black Holes in Globular Clusters
- An excess of massive stars in the local 30 Doradus starburst
- A stellar census in globular clusters with MUSE: The contribution of rotation to cluster dynamics studied with 200 000 stars
- N-body modeling of globular clusters: Masses, mass-to-light ratios and intermediate-mass black holes
- Hubble Space Telescope Proper Motion (HSTPROMO) Catalogs of Galactic Globular Clusters. I. Sample Selection, Data Reduction and NGC 7078 Results
- Hubble Space Telescope proper motion (HSTPROMO) catalogs of Galactic globular clusters. II. Kinematic profiles and maps
- Variations in the initial mass function in early-type galaxies: A critical comparison between dynamical and spectroscopic results
- Cores and Cusps in the Dwarf Spheroidals
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XXIII. Proper-motion catalogs and internal kinematics
- Globular cluster number density profiles using Gaia DR2
- Evidence for a bottom-light initial mass function in massive star clusters
- Monte Carlo Simulations of Star Clusters - VI. The globular cluster NGC 6397
- Black Hole Mergers from Star Clusters with Top-Heavy Initial Mass Functions
- Biases in the inferred mass-to-light ratio of globular clusters: no need for variations in the stellar mass function
- Photometric determination of the mass accretion rates of pre-main sequence stars. V. Recent star formation in the 30 Dor nebula
- Spherical models of star clusters with potential escapers
- Impact of initial mass functions on the dynamical channel of gravitational wave sources
- The Lifetimes of Star Clusters Born with a Top-heavy IMF
- The WAGGS project -- III. Discrepant mass-to-light ratios of Galactic globular clusters at high metallicity
- Optimal Differential Astrometry for Multiconjugate Adaptive Optics. I. Astrometric Distortion Mapping using On-sky GeMS Observations of NGC 6723