Deviations from the universal Initial Mass Function in binary star clusters
arXiv:2411.19333 · doi:10.1093/mnras/stae2648
Abstract
The stellar mass distribution in star-forming regions, stellar clusters and associations, the Initial Mass Function (IMF), appears to be invariant across different star-forming environments, and is consistent with the IMF observed in the Galactic field. Deviations from the field, or standard, IMF, if genuine, would be considered strong evidence for a different set of physics at play during the formation of stars in the birth region in question. We analyse N-body simulations of the evolution of spatially and kinematically substructured star-forming regions to identify the formation of binary star clusters, where two (sub)clusters which form from the same Giant Molecular Cloud orbit a common centre of mass. We then compare the mass distributions of stars in each of the subclusters and compare them to the standard IMF, which we use to draw the stellar masses in the star-forming region from which the binary cluster(s) form. In each binary cluster that forms, the mass distributions of stars in one subcluster deviates from the standard IMF, and drastically so when we apply similar mass resolution limits as for the observed binary clusters. Therefore, if a binary subcluster is observed to have an unusual IMF, this may simply be the result of dynamical evolution, rather than different physical conditions for star formation in these systems.
6 pages, 4 figures, accepted for publication in MNRAS
References in corpus (43)
- Scikit-learn: Machine Learning in Python
- Embedded Clusters in Molecular Clouds
- A Universal Stellar Initial Mass Function? A Critical Look at Variations
- Presupernova evolution and explosive nucleosynthesis of rotating massive stars in the metallicity range -3 <=[Fe/H]<= 0
- On the fraction of star formation occurring in bound stellar clusters
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Star cluster ecology IVa: Dissection of an open star cluster---photometry
- The statistical Analysis of Star Clusters
- The Spatial Distribution of Star Formation in the Solar Neighbourhood: Do all stars form in clusters?
- The APOGEE-2 Survey of the Orion Star Forming Complex II: Six-dimensional structure
- The dynamical evolution of fractal star clusters: the survival of substructure
- The ages of young star clusters, massive blue stragglers and the upper mass limit of stars: analysing age dependent stellar mass functions
- Dynamical evolution of star forming regions
- On the function describing the stellar initial mass function
- The Star Formation History and Mass Function of the Double Cluster h and Chi Persei
- The Origin and Universality of the Stellar Initial Mass Function
- OB associations and their origins
- Double or binary: on the multiplicity of open star clusters
- A statistical study of binary and multiple clusters in the LMC
- Runaway and walkaway stars from the ONC with Gaia DR2
- The IMF of stellar clusters: effects of accretion and feedback
- Supernova feedback and the energy deposition in molecular clouds
- Dynamical evolution of fractal structures in star-forming regions
- The long-term evolution of star clusters formed with a centrally-peaked star-formation-efficiency profile
- The Spatial Evolution of Young Massive Clusters I. A New Tool to Quantitatively Trace Stellar Clustering
- Dynamical evolution of star-forming regions: III. Unbound stars and predictions for Gaia
- Is it possible to reconcile extragalactic IMF variations with a universal Milky Way IMF?
- Hunting for Runaways from the Orion Nebula Cluster
- The emergence of the galactic stellar mass function from a non-universal IMF in clusters
- Binary open clusters in the Milky Way: photometric and spectroscopic analysis of NGC 5617 and Trumpler 22
- Binary open clusters in the Gaia data
- How do binary clusters form?
- The galaxy-wide stellar initial mass function in the presence of cluster-to-cluster IMF variations
- How does a low-mass cut-off in the stellar IMF affect the evolution of young star clusters?
- Discovery and description of two young open clusters in the primordial group of NGC 6871
- Investigating the structure of star-forming regions using INDICATE
- The Formation of Binary Star Clusters in the Milky Way and Large Magellanic Cloud
- NGC1605a and b: an old binary open cluster in the Galaxy
- No preferential spatial distribution for massive stars expected from their formation
- Three candidate double clusters in the LMC: truth or dare?
- The evolution of phase space densities in star-forming regions
- Evolution of spatio-kinematic structures in star-forming regions: are Friends of Friends worth knowing?
- Making top-heavy IMFs from canonical IMFs near the Galactic Centre