Variations in the width, density, and direction of the Palomar 5 tidal tails
Abstract
Stars that escape globular clusters form tidal tails that are predominantly shaped by the global distribution of mass in the Galaxy, but also preserve a historical record of small-scale perturbations. Using deep photometry from DECaLS, we present highly probable members of the tidal tails associated with the disrupting globular cluster Palomar 5. These data yield the cleanest view of a stellar stream beyond and reveal: (1) a wide, low surface-brightness extension of the leading tail; (2) significant density variations along the stream; and (3) sharp changes in the direction of both the leading and the trailing tail. In the fiducial Milky Way model, a rotating bar perturbs the Palomar 5 tails and can produce streams with similar width and density profiles to those observed. However, the deviations of the stream track in this simple model do not match those observed in the Palomar 5 trailing tail, indicating the need for an additional source of perturbation. These discoveries open up the possibility of measuring the population of perturbers in the Milky Way, including dark-matter subhalos, with an ensemble of stellar streams and deep photometry alone.
Cite
@article{arxiv.1910.00592,
title = {Variations in the width, density, and direction of the Palomar 5 tidal tails},
author = {Ana Bonaca and Sarah Pearson and Adrian M. Price-Whelan and Arjun Dey and Marla Geha and Nitya Kallivayalil and John Moustakas and Ricardo Muñoz and Adam D. Myers and David J. Schlegel and Francisco Valdes},
journal= {arXiv preprint arXiv:1910.00592},
year = {2020}
}
Comments
4 figures, 12 pages; submitted to AAS Journals