The Formation of Large Galactic Disks: Revival or Survival?
Abstract
Using the deepest and the most complete set of observations of distant galaxies, we investigate how extended disks could have formed. Observations include spatially-resolved kinematics, detailed morphologies and photometry from UV to mid-IR. Six billion years ago, half of the present-day spiral progenitors had anomalous kinematics and morphologies, as well as relatively high gas fractions. We argue that gas-rich major mergers, i.e., fusions between gas-rich disk galaxies of similar mass, can be the likeliest driver for such strong peculiarities. This suggests a new channel of disk formation, e.g. many disks could be reformed after gas-rich mergers. This is found to be in perfect agreement with predictions from the state-of-the-art LCDM semi-empirical models: due to our sensitivity in detecting mergers at all phases, from pairs to relaxed post-mergers, we find a more accurate merger rate. The scenario can be finally confronted to properties of nearby galaxies, including M31 and galaxies showing ultra-faint, gigantic structures in their haloes.
Keywords
Cite
@article{arxiv.1110.1376,
title = {The Formation of Large Galactic Disks: Revival or Survival?},
author = {F. Hammer and M. Puech and H. Flores and E. Athanassoula and Y. B. Yang and J. L. Wang and M. Rodrigues and S. Fouquet},
journal= {arXiv preprint arXiv:1110.1376},
year = {2015}
}
Comments
Proceedings of the annual meeting of the French Astronomical Society, 2011, 6 pages, 1 Figure