Skip to main navigation Skip to search Skip to main content

The VANDELS survey: the star-formation histories of massive quiescent galaxies at 1.0 < z < 1.3

  • A. C. Carnall
  • , R. J. McLure
  • , J. S. Dunlop
  • , F. Cullen
  • , D. J. McLeod
  • , V. Wild
  • , B. D. Johnson
  • , S. Appleby
  • , R. Davé
  • , R. Amorin
  • , M. Bolzonella
  • , M. Castellano
  • , A. Cimatti
  • , O. Cucciati
  • , A. Gargiulo
  • , B. Garilli
  • , F. Marchi
  • , L. Pentericci
  • , L. Pozzetti
  • , C. Schreiber
  • M. Talia, G. Zamorani

Research output: Contribution to journalArticlepeer-review

Abstract

We present a Bayesian full-spectral-fitting analysis of 75 massive (⁠M∗>1010.3M⊙⁠) UVJ-selected galaxies at redshifts of 1.0 < z < 1.3, combining extremely deep rest-frame ultraviolet spectroscopy from VANDELS with multiwavelength photometry. By the use of a sophisticated physical plus systematic uncertainties model, constructed within the bagpipes code, we place strong constraints on the star-formation histories (SFHs) of individual objects. We first constrain the stellar mass versus stellar age relationship, finding a steep trend towards earlier average formation time with increasing stellar mass (downsizing) of 1.48+0.34−0.39 Gyr per decade in mass, although this shows signs of flattening at M∗>1011M⊙⁠. We show that this is consistent with other spectroscopic studies from 0 < z < 2. This relationship places strong constraints on the AGN-feedback models used in cosmological simulations. We demonstrate that, although the relationships predicted by SIMBA and ILLUSTRISTNG agree well with observations at z = 0.1, they are too shallow at z = 1, predicting an evolution of ≲0.5 Gyr per decade in mass. Secondly, we consider the connections between green-valley, post-starburst, and quiescent galaxies, using our inferred SFH shapes and the distributions of galaxy physical properties on the UVJ diagram. The majority of our lowest-mass galaxies (⁠M∗∼1010.5M⊙⁠) are consistent with formation in recent (z < 2), intense starburst events, with time-scales of ≲500  Myr. A second class of objects experience extended star-formation epochs before rapidly quenching, passing through both green-valley and post-starburst phases. The most massive galaxies in our sample are extreme systems: already old by z = 1, they formed at z ∼ 5 and quenched by z = 3. However, we find evidence for their continued evolution through both AGN and rejuvenated star-formation activity.
Original languageEnglish
Pages (from-to)417-439
JournalMonthly Notices of the Royal Astronomical Society
Volume490
Issue number1
Early online date12 Sept 2019
DOIs
Publication statusPublished - Nov 2019

Keywords

  • Methods: statistical
  • Galaxies: evolution
  • Galaxies: star formation

Fingerprint

Dive into the research topics of 'The VANDELS survey: the star-formation histories of massive quiescent galaxies at 1.0 < z < 1.3'. Together they form a unique fingerprint.

Cite this