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The role of mergers and rejuvenation in the buildup of the quiescent population at cosmic noon

  • Jimi E Harrold
  • , Omar Almaini
  • , Frazer R Pearce
  • , Robert M Yates
  • , Dave Maltby
  • , Kate Rowlands
  • , Vivienne Wild
  • , Maya Skarbinski
  • , Thomas de Lisle

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)
2 Downloads (Pure)

Abstract

We investigate the quenching of galaxies using a mock observational light-cone generated from the Semi-Analytic Model (SAM) L-Galaxies, closely matched to observations from the UKIDSS Ultra Deep Survey (UDS). The sample is used to study merging, rejuvenation, and visibility times for star-forming, quiescent, and post-starburst (PSB) galaxies, to assess the impact on the build-up of the passive galaxy mass functions. We find, for example, that a typical PSB ( M) at has a 15 per cent likelihood of merging and around a 25 per cent likelihood of rejuvenating within 1 Gyr of being identified. Applying these rates and time-scales to the observational data, we estimate the fraction of quiescent galaxies that passed through a PSB phase. We find that per cent of the build-up in the massive end ( M) of the passive mass function at can be explained by PSBs, with the contribution declining to per cent by . Accounting for mergers and rejuvenation reduces the inferred PSB contribution by approximately a factor of two. At lower stellar masses ( M), rapid quenching through a PSB phase explains a significantly larger fraction of the growth in the passive mass function. With a visibility time of 0.75 Gyr, we find that around 60–80 per cent of low-mass passive galaxies underwent a PSB phase. Our findings provide further evidence that low- and high-mass galaxies follow different quenching pathways.
Original languageEnglish
Pages (from-to)1-11
Number of pages11
JournalMonthly Notices of the Royal Astronomical Society
Volume545
Issue number3
Early online date13 Dec 2025
DOIs
Publication statusPublished - 31 Jan 2026

Keywords

  • galaxies: evolution
  • methods: analytical
  • methods: numerical
  • galaxies: abundances

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