Mass-Dependent Radial Distribution of Single and Binary Stars in the Pleiades and their Dynamical Implications
arXiv:2503.13280 · doi:10.3847/2041-8213/adbe60
Abstract
The Pleiades is a young open cluster that has not yet dynamically relaxed, making it an ideal target to observe various internal dynamical effects. By employing a well-defined sample of main-sequence (MS) cluster members, including both MS single stars and unresolved MS+MS binaries, we revisited their individual masses and mass functions and quantified the mass dependence of their radial distributions. We found that the mass function of binaries is more top-heavy than that of single stars. Significant mass segregation is observed for both single and binary populations respectively, with more massive objects concentrated towards the cluster center. Notably, within given mass ranges, binaries are distributed more scattered than single stars, providing direct evidence for more efficient dynamical disruption of binaries in the inner region. The radial distribution of the binary fraction, expressed as the relation can be characterized by a bimodal shape, with higher values in both innermost and outermost regions of the cluster. The lower-mass subsample exhibits a monotonic increase in with radius, reflecting the impact of binary disruption. Conversely, for the higher-mass subsample, decreases with radius. It can be explained that these massive cluster members, which possess higher binary probabilities, have already undergone significant mass segregation. All these observational evidence and analyses related to the radial mass distribution imply that the Pleiades is currently undergoing a complicated interplay of various internal dynamical effects, of which the modulation between mass segregation and binary disruption is particularly pronounced.
8 pages, 5 figures; Accepted for publication in ApJL
References in corpus (21)
- The Gaia mission
- Gaia Data Release 3: Summary of the content and survey properties
- Gaia Early Data Release 3 -- Catalogue validation
- Improving the open cluster census. II. An all-sky cluster catalogue with Gaia DR3
- Gaia Data Release 3: Catalogue Validation
- A VLBI Resolution of the Pleiades Distance Controversy
- Extended stellar systems in the solar neighborhood -- V. Discovery of coronae of nearby star clusters
- The Seven Sisters DANCe. I. Empirical isochrones, Luminosity and Mass Functions of the Pleiades cluster
- Revisiting the mass of open clusters with \emph{Gaia} data
- Modelling unresolved binaries of open clusters in color-magnitude diagram. I. method and application of NGC3532
- The Distribution of Stellar Mass in the Pleiades
- A EDR3 search for tidal tails in disintegrating open clusters
- MiMO: Mixture Model for Open Clusters in Color-Magnitude Diagrams
- Different Dynamical Ages for the Two Young and Coeval LMC Star Clusters NGC 1805 and NGC 1818 Imprinted on Their Binary Populations
- On the Motion of Stars in the Pleiades according to Gaia DR2 Data
- The family pictures of our neighbours: investigating the mass function and dynamical parameters of nearby open clusters
- A Gaia astrometric view of the open clusters Pleiades, Praesepe and Blanco 1
- Two paths of cluster evolution: global expansion versus core collapse
- Tracing the Origins of Mass Segregation in M35: Evidence for Primordially Segregated Binaries
- Investigating Mass Segregation of the Binary Stars in the Open Cluster NGC 6819
- Photometric Determination of Unresolved Main-sequence Binaries in the Pleiades: Binary Fraction and Mass Ratio Distribution