Variation in the Stellar Mass Function Along Stellar Streams
arXiv:2108.02217 · doi:10.1093/mnras/stab3451
Abstract
Stellar streams are the inevitable end product of star cluster evolution, with the properties of a given stream being related to its progenitor. We consider how the dynamical history of a progenitor cluster, as traced by the evolution of its stellar mass function, is reflected in the resultant stream. We generate model streams by evolving star clusters with a range of initial half-mass relaxation times and dissolution times via direct N-body simulations. Stellar streams that dissolve quickly show no variation in the stellar mass function along the stream. Variation is, however, observed along streams with progenitor clusters that dissolve after several relaxation times. The mass function at the edges of a stream is approximately primordial as it is populated by the first stars to escape the cluster before segregation occurs. Moving inwards the mass function steepens as the intermediate parts of the stream consist of mostly low-mass stars that escaped the cluster after some segregation has occurred. The centre of the stream is then marked by a flatter mass function, as the region is dominated by high-mass stars that quickly segregated to the progenitor cluster's centre and were the last stars to become unbound. We further find that the maximum slope of the mass function along the stream and the rate at which it decreases with distance from the dissolved progenitor serve as proxies for the dynamical state reached by the progenitor cluster before dissolution; this may be able to be applied to observed streams with near-future observations.
11 pages, 11 figures, accepted by MNRAS for publication
References in corpus (20)
- The Gaia mission
- galpy: A Python Library for Galactic Dynamics
- Detection of a 63 Degree Cold Stellar Stream in the Sloan Digital Sky Survey
- Dynamical age differences among coeval star clusters as revealed by blue stragglers
- Globular Cluster Streams as Galactic High-Precision Scales - The Poster Child Palomar 5
- The life cycle of star cluster in a tidal field
- Charting the Galactic acceleration field I. A search for stellar streams with Gaia DR2 and EDR3 with follow-up from ESPaDOnS and UVES
- On the structure of tidal tails
- Forensics of Subhalo-Stream Encounters: The Three Phases of Gap Growth
- Evidence for primordial mass segregation in globular clusters
- Gaps in globular cluster streams: giant molecular clouds can cause them too
- Milky Way Mass and Potential Recovery Using Tidal Streams in a Realistic Halo
- Orbital Clustering Identifies the Origins of Galactic Stellar Streams
- A supra-massive population of stellar-mass black holes in the globular cluster Palomar 5
- Variations in the width, density, and direction of the Palomar 5 tidal tails
- Inferring the gravitational potential of the Milky Way with a few precisely measured stars
- The Global Mass Functions of 35 Galactic globular clusters: II. Clues on the Initial Mass Function and Black Hole Retention Fraction
- Feeling the pull, a study of natural Galactic accelerometers. II: kinematics and mass of the delicate stellar stream of the Palomar 5 globular cluster
- Velocity Dispersion of the GD-1 Stellar Stream
- Radial Variation in the Stellar Mass Functions of Star Clusters