English

Mass Segregation in the Hyades Cluster

Astrophysics of Galaxies 2022-03-30 v1 Solar and Stellar Astrophysics

Abstract

Using the Gaia colour-magnitude diagram, we assign masses to a catalogue of 979 confirmed members of the Hyades cluster and tails. By fitting the cumulative mass profile, stars within the tidal radius have a Plummer-like profile with half-mass radius rhr_{\rm h} of 5.75 pc. The tails are extended with rh=69.35r_{\rm h} = 69.35 pc and fall off more slowly than Plummer with density proportional to distance1.36^{-1.36}. The cluster stars are separated into two groups at BP-RP =2=2 or 0.56M0.56 M_\odot to give a high mass (Mˉ=0.95M{\bar M} = 0.95 M_\odot) and a low mass (Mˉ=0.32M{\bar M} = 0.32 M_\odot) population. We show that: (i) the high mass population has a half-mass radius rhr_{\rm h} of 4.88 pc, whilst the low mass population has rh=8.10r_{\rm h} = 8.10 pc; (ii) despite the differences in spatial extent, the kinematics and binarity properties of the high and low mass populations are similar. They have isotropic velocity ellipsoids with mean 1d velocity dispersions σ\sigma of 0.427 and 0.415 km s1^{-1} respectively. The dynamical state of the Hyades is far from energy equipartition (σMˉ1/2\sigma \propto {\bar M}^{-1/2}). We identify a new mass segregation instability for clusters with escape speed VV. Populations with V/σ22V/\sigma \lesssim 2\sqrt{2} can never attain thermal equilibrium and equipartition. This regime encompasses many Galactic open and globular clusters. For the Hyades, there must be an outward energy flux of at least 9.5×104Mkm2s2Myr19.5 \times 10^{-4} M_\odot\,{\rm km^2\, s^{-2} Myr^{-1}} to maintain its current configuration. The present mass loss of 0.26MMyr10.26 M_\odot {\rm Myr}^{-1} due to tidal stripping by itself implies a substantial energy flow beyond the required magnitude.

Keywords

Cite

@article{arxiv.2202.06973,
  title  = {Mass Segregation in the Hyades Cluster},
  author = {N. Wyn Evans and Semyeong Oh},
  journal= {arXiv preprint arXiv:2202.06973},
  year   = {2022}
}

Comments

MNRAS, submitted

R2 v1 2026-06-24T09:36:06.634Z