English

Angular momentum transfer and the size - mass relation in early - type galaxies

Cosmology and Nongalactic Astrophysics 2014-02-04 v1 Astrophysics of Galaxies

Abstract

Early - type galaxies (ETGs) define a narrow strip in the size - mass plane because of the observed correlation between the effective radius ReffR_{eff} and the total stellar mass MM_{\star}. When expressed in logarithmic units, a linear relation, logReffγlogM\log{R_{eff}} \propto \gamma \log{M_{\star}}, is indeed observationally found, but the slope γ\gamma deviates from the canonical γ=1/2\gamma = 1/2 value which can be naively predicted for a spherically symmetric isotropic system. We propose here that a transfer of angular momentum to the stellar component induces an anisotropy in the velocity space thus leading to a modified distribution function (DF). Assuming an Osipkov - Merritt like anisotropic DF, we derive an analytic relation between the slope γ\gamma of the size - mass relation and the slope α\alpha of the angular momentum term in the DF. With this simple model, we are then able to recover the observed γ\gamma value provided α\alpha is suitably set. It turns out that an anisotropy profile which is tangential inside 0.6ra\sim 0.6 r_a and radial outside, with rar_a the anisotropy radius, is able to reproduce the observed size - mass relation observed for massive (M2×1010 h1MM_{\star} \ge 2 \times 10^{10} \ h^{-1} {\rm M}_{\odot}) elliptical galaxies.

Cite

@article{arxiv.0906.2457,
  title  = {Angular momentum transfer and the size - mass relation in early - type galaxies},
  author = {V. F. Cardone and A. Del Popolo and P. Kroupa},
  journal= {arXiv preprint arXiv:0906.2457},
  year   = {2014}
}

Comments

9 pages, 2 figures, submitted to MNRAS

R2 v1 2026-06-21T13:13:04.060Z