Exploring over 700 massive quiescent galaxies at z = 2-7: Demographics and stellar mass functions

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Baker, William M., Valentino, Francesco, Lagos, Claudia del P., Ito, Kei, Jespersen, Christian Kragh, Gottumukkala, Rashmi, Hjorth, Jens, Langeroodi, Danial, Sedgewick, Aidan
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914119241695232
author Baker, William M.
Valentino, Francesco
Lagos, Claudia del P.
Ito, Kei
Jespersen, Christian Kragh
Gottumukkala, Rashmi
Hjorth, Jens
Langeroodi, Danial
Sedgewick, Aidan
author_facet Baker, William M.
Valentino, Francesco
Lagos, Claudia del P.
Ito, Kei
Jespersen, Christian Kragh
Gottumukkala, Rashmi
Hjorth, Jens
Langeroodi, Danial
Sedgewick, Aidan
contents High-redshift ($z>2$) massive quiescent galaxies are crucial tests of early galaxy formation and evolutionary mechanisms through their cosmic number densities and stellar mass functions (SMFs). We explore a sample of 743 massive ($\rm M_*> 10^{9.5}M_\odot$) quiescent galaxies from $z=2-7$ in over 800 arcmin$^2$ of NIRCam imaging from a compilation of public JWST fields (with a total area $>$ 5 $\times$ previous JWST studies). We compute and report their cosmic number densities, stellar mass functions, and cosmic stellar mass density. We confirm a significant overabundance of massive quiescent galaxies relative to a range of cosmological hydrodynamical simulations and semi-analytic models (SAMs). We find that no simulations or SAMs accurately reproduce the SMF for massive quiescent galaxies at any redshift within the interval $z=2-5$. This shows that none of these models' feedback prescriptions are fully capturing high-z galaxy quenching, challenging the standard formation scenarios. We find a greater abundance of lower-mass ($\rm M_*<10^{10}M_\odot$) quiescent galaxies than previously found, highlighting the importance of sSFR cuts rather than simple colour selection. We show the importance of this selection bias, alongside individual field-to-field variations caused by cosmic variance, in varying the observed quiescent galaxy SMF, especially at higher-z. We also find a steeper increase in the cosmic stellar mass density for massive quiescent galaxies than has been seen previously, with $ρ_*\propto (1+z)^{-7.2\pm0.3}$, indicating the dramatic increase in the importance of galaxy quenching within these epochs.
format Preprint
id arxiv_https___arxiv_org_abs_2506_04119
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Exploring over 700 massive quiescent galaxies at z = 2-7: Demographics and stellar mass functions
Baker, William M.
Valentino, Francesco
Lagos, Claudia del P.
Ito, Kei
Jespersen, Christian Kragh
Gottumukkala, Rashmi
Hjorth, Jens
Langeroodi, Danial
Sedgewick, Aidan
Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
High-redshift ($z>2$) massive quiescent galaxies are crucial tests of early galaxy formation and evolutionary mechanisms through their cosmic number densities and stellar mass functions (SMFs). We explore a sample of 743 massive ($\rm M_*> 10^{9.5}M_\odot$) quiescent galaxies from $z=2-7$ in over 800 arcmin$^2$ of NIRCam imaging from a compilation of public JWST fields (with a total area $>$ 5 $\times$ previous JWST studies). We compute and report their cosmic number densities, stellar mass functions, and cosmic stellar mass density. We confirm a significant overabundance of massive quiescent galaxies relative to a range of cosmological hydrodynamical simulations and semi-analytic models (SAMs). We find that no simulations or SAMs accurately reproduce the SMF for massive quiescent galaxies at any redshift within the interval $z=2-5$. This shows that none of these models' feedback prescriptions are fully capturing high-z galaxy quenching, challenging the standard formation scenarios. We find a greater abundance of lower-mass ($\rm M_*<10^{10}M_\odot$) quiescent galaxies than previously found, highlighting the importance of sSFR cuts rather than simple colour selection. We show the importance of this selection bias, alongside individual field-to-field variations caused by cosmic variance, in varying the observed quiescent galaxy SMF, especially at higher-z. We also find a steeper increase in the cosmic stellar mass density for massive quiescent galaxies than has been seen previously, with $ρ_*\propto (1+z)^{-7.2\pm0.3}$, indicating the dramatic increase in the importance of galaxy quenching within these epochs.
title Exploring over 700 massive quiescent galaxies at z = 2-7: Demographics and stellar mass functions
topic Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2506.04119