English

Fast, Slow, Early, Late: Quenching Massive Galaxies at z~0.8

Astrophysics of Galaxies 2022-03-02 v2

Abstract

We investigate the stellar populations for a sample of 161 massive, mainly quiescent galaxies at zobs=0.8\langle z_{\rm obs} \rangle=0.8 with deep Keck/DEIMOS rest-frame optical spectroscopy (HALO7D survey). With the fully Bayesian framework Prospector, we simultaneously fit the spectroscopic and photometric data with an advanced physical model (including non-parametric star-formation histories, emission lines, variable dust attenuation law, and dust and AGN emission) together with an uncertainty and outlier model. We show that both spectroscopy and photometry are needed to break the dust-age-metallicity degeneracy. We find a large diversity of star-formation histories: although the most massive (M>2×1011 MM_{\star}>2\times10^{11}~M_{\odot}) galaxies formed the earliest (formation redshift of zf510z_{\rm f}\approx5-10 with a short star-formation timescale of τSF1 Gyr\tau_{\rm SF}\lesssim1~\mathrm{Gyr}), lower-mass galaxies have a wide range of formation redshifts, leading to only a weak trend of zfz_{\rm f} with MM_{\star}. Interestingly, several low-mass galaxies with have formation redshifts of zf58z_{\rm f}\approx5-8. Star-forming galaxies evolve about the star-forming main sequence, crossing the ridgeline several times in their past. Quiescent galaxies show a wide range and continuous distribution of quenching timescales (τquench05 Gyr\tau_{\rm quench}\approx0-5~\mathrm{Gyr}) with a median of τquench=1.00.9+0.8 Gyr\langle\tau_{\rm quench}\rangle=1.0_{-0.9}^{+0.8}~\mathrm{Gyr} and of quenching epochs of zquench0.85.0z_{\rm quench}\approx0.8-5.0 (zquench=1.30.4+0.7\langle z_{\rm quench}\rangle=1.3_{-0.4}^{+0.7}). This large diversity of quenching timescales and epochs points toward a combination of internal and external quenching mechanisms. In our sample, rejuvenation and "late bloomers" are uncommon. In summary, our analysis supports the "grow & quench" framework and is consistent with a wide and continuously-populated diversity of quenching timescales.

Keywords

Cite

@article{arxiv.2102.12494,
  title  = {Fast, Slow, Early, Late: Quenching Massive Galaxies at z~0.8},
  author = {Sandro Tacchella and Charlie Conroy and S. M. Faber and Benjamin D. Johnson and Joel Leja and Guillermo Barro and Emily C. Cunningham and Alis J. Deason and Puragra Guhathakurta and Yicheng Guo and Lars Hernquist and David C. Koo and Kevin McKinnon and Constance M. Rockosi and Joshua S. Speagle and Pieter van Dokkum and Hassen M. Yesuf},
  journal= {arXiv preprint arXiv:2102.12494},
  year   = {2022}
}

Comments

30 pages, 12 figures + appendix, accepted by ApJ