Stellar collisions in globular clusters: Constraints on the initial mass function of the first generation of stars
arXiv:2203.11288 · doi:10.1051/0004-6361/202243556
Abstract
Globular clusters display an anticorrelation between the fraction of the first generation of stars () and the slope of the present-day mass function of the clusters (), which is particularly significant for massive clusters. In the framework of the binary-mediated collision scenario for the formation of the second-generation stars in globular clusters, we test the effect of a varying stellar initial mass function (IMF) of the G1 stars on the anticorrelation. We use a simple collision model that has only two input parameters, the shape of the IMF of G1 stars and the fraction of G1 stars that coalesce to form second-generation stars. We show that a variable efficiency of the collision process is necessary in order to explain the anticorrelation; however, the scatter in the anticorrelation can only be explained by variations in the IMF, and in particular by variations in the slope in the mass interval (0.1-0.5) M. Our results indicate that in order to explain the scatter in the relation, it is necessary to invoke variations in the slope in this mass range between and . Interpreted in terms of a Kroupa-like broken power law, this translates into variations in the mean mass of between and M. This level of variation is consistent with what is observed for young stellar clusters in the Milky Way and may reflect variations in the physical conditions of the globular cluster progenitor clouds at the time the G1 population formed or may indicate the occurrence of collisions between protostellar embryos before stars settle on the main sequence.
Accepted to A&A. Matches the published version. Typo for the sign of alpha1 and alpha2 corrected in Figures 1-4
References in corpus (38)
- The ACS Survey of Galactic Globular Clusters. I. Overview and Clusters Without Previous HST Photometry
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. I. Overview of the Project and Detection of Multiple Stellar Populations
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. IX. The Atlas of Multiple Stellar Populations
- Origin of the abundance patterns in Galactic globular clusters: constraints on dynamical and chemical properties of globular clusters
- The fraction of second generation stars in Globular Clusters from the analysis of the Horizontal Branch
- Gaia DR2 reveals a star formation burst in the disc 2-3 Gyr ago
- The Origin of the Arches Stellar Cluster Mass Function
- Multiple populations in the old and massive Small Magellanic Cloud globular cluster NGC121
- The possible role of stellar mergers for the formation of multiple stellar populations in globular clusters
- The global mass functions of 35 Galactic globular clusters: I. Observational data and correlations with cluster parameters
- First evidence of fully spatially mixed first and second generations in globular clusters: the case of NGC 6362
- Accretion of pristine gas and dilution during the formation of multiple-population globular clusters
- Testing the universality of the IMF with Bayesian statistics: young clusters
- Dynamical Evolution of Multiple-Population Globular Clusters
- Multiple Stellar Populations of Globular Clusters from Homogenous Ca by Photometry I. M22 (NGC 6656)
- Gas expulsion vs gas retention: what process dominates in young massive clusters?
- Star-formation rates from young-star counts and the structure of the ISM across the NGC346/N66 complex in the SMC
- The formation of secondary stellar generations in massive young star clusters from rapidly cooling shocked stellar winds
- Towards a fully consistent Milky Way disc model - III. Constraining the initial mass function
- Multiple stellar populations along the red Horizontal Branch and Red Clump of Globular Clusters
- The Initial Mass Function of the Inner Galaxy Measured From OGLE-III Microlensing Timescales
- The low-mass population in the young cluster Stock 8: Stellar properties and Initial Mass Function
- Dynamical Constraints on the Origin of Multiple Stellar Populations in Globular Clusters
- Uncovering Multiple Populations with Washington Photometry: I. The Globular Cluster NGC 1851
- Monte Carlo simulations of multiple populations in globular clusters: constraints on the cooling flow vs. accretion scenario using million bodies simulations
- Radial Variation in the Stellar Mass Functions of Star Clusters
- The Mass Function of omega Centauri down to 0.15 M_s
- Modelling the Observed Stellar Mass Function and its Radial Variation in Galactic Globular Clusters
- New Insight into the stellar mass function of Galactic globular clusters
- Binary interactions as a possible scenario for the formation of multiple stellar populations in globular clusters
- Second generation star formation in globular clusters of different masses
- The structure and characteristic scales of the HI gas in galactic disks
- HST observations of the globular cluster NGC 6402 (M14) and its peculiar multiple populations
- Stellar collisions in globular clusters: the origin of multiple stellar populations
- Detailed analysis of the poorly studied northern open cluster NGC 1348 using multi-color photometry and GAIA EDR3 astrometry
- Photometric Detection of Multiple Populations in Globular Clusters Using Integrated Light
- Decoding the bifurcated red-giant branch as a tracer of multiple stellar populations in the young Large Magellanic Cloud cluster NGC 2173
- Using the Modified Lognormal Power Law Distribution to Model the Mass Function of NGC 1711