Spatial mixing of stellar populations in globular clusters via binary-single star scattering
arXiv:2508.03322 · doi:10.1051/0004-6361/202556753
Abstract
The majority of Galactic globular star clusters (GCs) have been reported to contain at least two populations of stars (we use P1 for the primordial and P2 for the chemically-enriched population). Recent observational studies found that dynamically-old GCs have P1 and P2 spatially mixed due to relaxation processes. However, in dynamically-young GCs, where P2 is expected to be more centrally concentrated from birth, the spatial distributions of P1 and P2 are sometimes very different from system to system. This suggests that more complex dynamical processes specific to certain GCs might have shaped those distributions. We aim to investigate the discrepancies between the spatial concentration of P1 and P2 stars in dynamically-young GCs. Our focus is to evaluate whether massive binary stars (e.g. BHs) can cause the expansion of the P2 stars through binary-single interactions in the core, and whether they can mix or even radially invert the P1 and P2 distributions. We use a set of theoretical and empirical arguments to evaluate the effectiveness of binary-single star scattering. We then construct a set of direct N-body models with massive primordial binaries to verify our estimates further and gain more insights into the dynamical processes in GCs. We find that binary-single star scatterings can push the central P2 stars outwards within a few relaxation times. While we do not produce radial inversion of P1 and P2 for any initial conditions we tested, this mechanism systematically produces clusters where P1 and P2 look fully mixed even in projection. The mixing is enhanced 1) in denser GCs, 2) in GCs containing more binary stars, and 3) when the mass ratio between the binary components and the cluster members is higher. Binary-single star interactions seem able to explain the observable properties of some dynamically-young GCs (e.g. NGC4590 or NGC5904) where P1 and P2 are fully radially mixed.
12 pages, 11 figures, accepted for publication in A&A
References in corpus (60)
- On the variation of the Initial Mass Function
- Evolution of binary stars and the effect of tides on binary populations
- Comprehensive analytic formulae for stellar evolution as a function of mass and metallicity
- The Galaxy in Context: Structural, Kinematic and Integrated Properties
- Multiple populations in globular clusters. Lessons learned from the Milky Way globular clusters
- Compact Object Modeling with the StarTrack Population Synthesis Code
- Multiple Stellar Populations in Globular Clusters
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- On The Maximum Mass of Stellar Black Holes
- The Effects of Binary Evolution on the Dynamics of Core Collapse and Neutron-Star Kicks
- Maximum gravitational recoil
- Total recoil: the maximum kick from nonspinning black-hole binary inspiral
- Origin of the system of globular clusters in the Milky Way
- Dynamics of stellar black holes in young star clusters with different metallicities - II. Black hole-black hole binaries
- Detailed abundances of a large sample of giant stars in M 54 and in the Sagittarius nucleus
- Concurrent formation of supermassive stars and globular clusters: implications for early self-enrichment
- Mass segregation and fractal substructure in young massive clusters: (I) the McLuster code and method calibration
- Dynamical Evolution and Spatial Mixing of Multiple Population Globular Clusters
- SMBH Formation via Gas Accretion in Nuclear Stellar Clusters
- PeTar: a high-performance N-body code for modeling massive collisional stellar systems
- Secondary star formation within massive star clusters: Origin of multiple stellar populations in globular clusters
- Limits on the primordial stellar multiplicity
- Age as a Major Factor in the Onset of Multiple Populations in Stellar Clusters
- The Hubble Space Telescope UV Legacy Survey of galactic globular clusters. VI. The internal kinematics of the multiple stellar populations in NGC 2808
- Loss Cone Dynamics
- A stellar-mass black hole population in the globular cluster NGC 6101?
- Investigating mass segregation process in globular clusters with Blue Straggler Stars: the impact of dark remnants
- The possible role of stellar mergers for the formation of multiple stellar populations in globular clusters
- Evolution of two stellar populations in globular clusters II. Effects of primordial gas expulsion
- Distribution of Serpens South protostars revealed with ALMA
- Velocity anisotropy in tidally limited star clusters
- Three-Component Kinematics of Multiple Stellar Populations in Globular Clusters with Gaia and VLT
- A family picture: tracing the dynamical path of the structural properties of multiple populations in globular clusters
- Dynamical Evolution of Multiple-Population Globular Clusters
- The Global Mass Functions of 35 Galactic globular clusters: II. Clues on the Initial Mass Function and Black Hole Retention Fraction
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XVIII. Proper-motion kinematics of multiple stellar populations in the core regions of NGC 6352
- Kinematical evolution of multiple stellar populations in star clusters
- Do star clusters form in a completely mass-segregated way?
- A Wide-Field View on Multiple Stellar Populations in 28 Milky Way Globular Clusters
- The moment of core collapse in star clusters with a mass function
- Gaia and Hubble unveil the kinematics of stellar populations in the Type II globular clusters ω Centauri and M 22
- Characterization of the velocity anisotropy of accreted globular clusters
- Monte Carlo simulations of multiple populations in globular clusters: constraints on the cooling flow vs. accretion scenario using million bodies simulations
- The role of rotation on the formation of second generation stars in globular clusters
- New insights into star cluster evolution towards energy equipartition
- Unexpected Formation Modes of the First Hard Binary in Core Collapse
- Amplification of superkicks in black-hole binaries through orbital eccentricity
- A 3D view of multiple populations kinematics in Galactic globular clusters
- The black hole retention fraction in star clusters
- Second generation star formation in globular clusters of different masses
- Two paths of cluster evolution: global expansion versus core collapse
- Mass segregation and dynamics of primordial binaries in star clusters with a radially anisotropic velocity distribution
- Dynamics of star clusters with tangentially anisotropic velocity distribution
- The hunt for self-similar core collapse
- The Kinematics of 30 Milky Way Globular Clusters and the Multiple Stellar Populations within
- Energy equipartition in multiple-population globular clusters
- Primordial mass segregation of star clusters with primordial binaries
- Ionising Feedback Effects on Star Formation in Globular Clusters with Multiple Stellar Populations
- Testing general relativity via direct measurement of black hole kicks
- Multiple stellar populations in MOCCA globular cluster models: Transient spatial over-concentration of pristine red giant stars driven by strong dynamical encounters