Dating the tidal disruption of globular clusters with Gaia data on their stellar streams
arXiv:1804.07770 · doi:10.3847/2041-8213/aac48c
Abstract
The Gaia mission promises to deliver precision astrometry at an unprecedented level, heralding a new era for discerning the kinematic and spatial coordinates of stars in our Galaxy. Here, we present a new technique for estimating the age of tidally disrupted globular cluster streams using the proper motions and parallaxes of tracer stars. We evolve the collisional dynamics of globular clusters within the evolving potential of a Milky Way-like halo extracted from a cosmological CDM simulation and analyze the resultant streams as they would be observed by Gaia. The simulations sample a variety of globular cluster orbits, and account for stellar evolution and the gravitational influence of the disk of the Milky Way. We show that a characteristic timescale, obtained from the dispersion of the proper motions and parallaxes of stars within the stream, is a good indicator for the time elapsed since the stream has been freely expanding away due to the tidal disruption of the globular cluster. This timescale, in turn, places a lower limit on the age of the cluster. The age can be deduced from astrometry using a modest number of stars, with the error on this estimate depending on the proximity of the stream and the number of tracer stars used.
8 pages, 4 figures, 1 table; Accepted for publication in ApJ Letters
References in corpus (13)
- The Astropy Project: Building an inclusive, open-science project and status of the v2.0 core package
- galpy: A Python Library for Galactic Dynamics
- The origin of the Milky Way globular clusters
- The information content in cold stellar streams
- The Little Engines That Could? Globular Clusters Contribute Significantly to Reionization-era Star Formation
- Ages of the Bulge globular clusters NGC 6522 and NGC 6626 (M28) from HST Proper-motion-cleaned Color-Magnitude Diagrams
- Globular clusters with Gaia
- A flexible method to evolve collisional systems and their tidal debris in external potentials
- The Next Generation Virgo cluster Survey (NGVS). XXVI. The issues of photometric age and metallicity estimates for globular clusters
- Properties of the Young Milky Way Globular Cluster Whiting 1 from Near-Infrared Photometry
- Star Streams and the Assembly History of the Galaxy
- The effect of secular galactic growth on the evolution of star clusters
- Globular Clusters and Dwarf Spheroidal Galaxies