English

The Quintuplet Cluster: Extended Structure and Tidal Radius

Solar and Stellar Astrophysics 2019-05-29 v1 Astrophysics of Galaxies

Abstract

The Quintuplet star cluster is one of only three known young (<10<10 Myr) massive (M >104>10^4 M_\odot) clusters within 100\sim100 pc of the Galactic Center. In order to explore star cluster formation and evolution in this extreme environment, we analyze the Quintuplet's dynamical structure. Using the HST WFC3-IR instrument, we take astrometric and photometric observations of the Quintuplet covering a 120×120120''\times120'' field-of-view, which is 1919 times larger than those of previous proper motion studies of the Quintuplet. We generate a catalog of the Quintuplet region with multi-band, near-infrared photometry, proper motions, and cluster membership probabilities for 10,54310,543 stars. We present the radial density profile of 715715 candidate Quintuplet cluster members with M4.7M\gtrsim4.7 M_\odot out to 3.23.2 pc from the cluster center. A 3σ3\sigma lower limit of 33 pc is placed on the tidal radius, indicating the lack of a tidal truncation within this radius range. Only weak evidence for mass segregation is found, in contrast to the strong mass segregation found in the Arches cluster, a second and slightly younger massive cluster near the Galactic Center. It is possible that tidal stripping hampers a mass segregation signature, though we find no evidence of spatial asymmetry. Assuming that the Arches and Quintuplet formed with comparable extent, our measurement of the Quintuplet's comparatively large core radius of 0.620.10+0.100.62^{+0.10}_{-0.10} pc provides strong empirical evidence that young massive clusters in the Galactic Center dissolve on a several Myr timescale.

Keywords

Cite

@article{arxiv.1904.02395,
  title  = {The Quintuplet Cluster: Extended Structure and Tidal Radius},
  author = {Nicholas Z. Rui and Matthew W. Hosek and Jessica R. Lu and William I. Clarkson and Jay Anderson and Mark R. Morris and Andrea M. Ghez},
  journal= {arXiv preprint arXiv:1904.02395},
  year   = {2019}
}

Comments

25 pages (21-page main text, 4-page appendix), 18 figures, submitted to ApJ

R2 v1 2026-06-23T08:28:59.372Z