English

Stellar velocity dispersion and initial mass function gradients in dissipationless galaxy mergers

Astrophysics of Galaxies 2020-10-14 v1

Abstract

The stellar initial mass function (IMF) is believed to be non-universal among early-type galaxies (ETGs). Parameterizing the IMF with the so-called IMF mismatch parameter αIMF\alpha_{\rm IMF}, which is a measure of the stellar mass-to-light ratio of an ensemble of stars and thus of the 'heaviness' of its IMF, one finds that for ETGs αe\alpha_{\rm e} (i.e. αIMF\alpha_{\rm IMF} integrated within the effective radius ReR_{\rm e}) increases with σe\sigma_{\rm e} (the line-of-sight velocity dispersion σlos\sigma_{\rm los} integrated within ReR_{\rm e}) and that, within the same ETG, αIMF\alpha_{\rm IMF} tends to decrease outwards. We study the effect of dissipationless (dry) mergers on the distribution of the IMF mismatch parameter αIMF\alpha_{\rm IMF} in ETGs using the results of binary major and minor merging simulations. We find that dry mergers tend to make the αIMF\alpha_{\rm IMF} profiles of ETGs shallower, but do not alter significantly the shape of the distributions in the spatially resolved σlosαIMF\sigma_{\rm los}\alpha_{\rm IMF} space. Individual galaxies undergoing dry mergers tend to decrease their αe\alpha_{\rm e}, due to erosion of αIMF\alpha_{\rm IMF} gradients and mixing with stellar populations with lighter IMF. Their σe\sigma_{\rm e} can either decrease or increase, depending on the merging orbital parameters and mass ratio, but tends to decrease for cosmologically motivated merging histories. The αe\alpha_{\rm e}-σe\sigma_{\rm e} relation can vary with redshift as a consequence of the evolution of individual ETGs: based on a simple dry-merging model, ETGs of given σe\sigma_{\rm e} are expected to have higher αe\alpha_{\rm e} at higher redshift, unless the accreted satellites are so diffuse that they contribute negligibly to the inner stellar distribution of the merger remnant.

Keywords

Cite

@article{arxiv.2009.05583,
  title  = {Stellar velocity dispersion and initial mass function gradients in dissipationless galaxy mergers},
  author = {Carlo Nipoti and Carlo Cannarozzo and Francesco Calura and Alessandro Sonnenfeld and Tommaso Treu},
  journal= {arXiv preprint arXiv:2009.05583},
  year   = {2020}
}

Comments

15 pages, 13 figures, accepted for publication in MNRAS

R2 v1 2026-06-23T18:28:53.507Z