English

Compact, bulge dominated structures of spectroscopically confirmed quiescent galaxies at z~3

Astrophysics of Galaxies 2020-12-07 v1

Abstract

We study structural properties of spectroscopically confirmed massive quiescent galaxies at z3z\approx 3 with one of the first sizeable samples of such sources, made of ten 10.8<log(M/M)<11.310.8<\log(M_{\star}/M_{\odot})<11.3 galaxies at 2.4<z<3.22.4 < z < 3.2 in the COSMOS field whose redshifts and quiescence are confirmed by HST grism spectroscopy. Although affected by a weak bias toward younger stellar populations, this sample is deemed to be largely representative of the majority of the most massive and thus intrinsically rarest quiescent sources at this cosmic time. We rely on targeted HST/WFC3 observations and fit S\'ersic profiles to the galaxy surface brightness distributions at 4000\approx 4000 angstrom restframe. We find typically high S\'ersic indices and axis ratios (medians 4.5\approx 4.5 and 0.730.73, respectively) suggesting that, at odds with some previous results, the first massive quiescent galaxies may largely be already bulge-dominated systems. We measure compact galaxy sizes with an average of 1.4\approx 1.4kpc at log(M/M)11.2\log(M_{\star}/M_{\odot})\approx 11.2, in good agreement with the extrapolation at the highest masses of previous determinations of the stellar mass - size relation of quiescent galaxies, and of its redshift evolution, from photometrically selected samples at lower and similar redshifts. This work confirms the existence of a population of compact, bulge dominated, massive, quiescent sources at z3z\approx 3, providing one of the first statistical estimates of their structural properties, and further constraining the early formation and evolution of the first quiescent galaxies.

Keywords

Cite

@article{arxiv.2012.02766,
  title  = {Compact, bulge dominated structures of spectroscopically confirmed quiescent galaxies at z~3},
  author = {Peter Lustig and Veronica Strazzullo and Chiara D'Eugenio and Emanuele Daddi and Maurilio Pannella and Alvio Renzini and Andrea Cimatti and Raphael Gobat and Shuowen Jin and Joseph J. Mohr and Masato Onodera},
  journal= {arXiv preprint arXiv:2012.02766},
  year   = {2020}
}

Comments

19 pages, 10 figures. Accepted for publication in MNRAS