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Galaxy and Mass Assembly: luminosity and stellar mass functions in GAMA groups

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arxiv 2009.08212 v1 pith:FZHWOEOM submitted 2020-09-17 astro-ph.GA

classification astro-ph.GA
keywords massgalaxieshalomassivegalaxygroupsluminositycentral
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abstract

How do galaxy properties (such as stellar mass, luminosity, star formation rate, and morphology) and their evolution depend on the mass of their host dark matter halo? Using the Galaxy and Mass Assembly (GAMA) group catalogue, we address this question by exploring the dependence on host halo mass of the luminosity function (LF) and stellar mass function (SMF) for grouped galaxies subdivided by colour, morphology and central/satellite. We find that spheroidal galaxies in particular dominate the bright and massive ends of the LF and SMF, respectively. More massive haloes host more massive and more luminous central galaxies. The satellite LF and SMF respectively show a systematic brightening of characteristic magnitude, and increase in characteristic mass, with increasing halo mass. In contrast to some previous results, the faint-end and low-mass slopes show little systematic dependence on halo mass. Semi-analytic models and simulations show similar or enhanced dependence of central mass and luminosity on halo mass. Faint and low-mass simulated satellite galaxies are remarkably independent of halo mass, but the most massive satellites are more common in more massive groups. In the first investigation of low-redshift LF and SMF evolution in group environments, we find that the red/blue ratio of galaxies in groups has increased since redshift $z \approx 0.3$ relative to the field population. This observation strongly suggests that quenching of star formation in galaxies as they are accreted into galaxy groups is a significant and ongoing process.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 62 citations worldwide. Full citation record

  1. Analytic Standard Errors for Latent Gaussian Discrete-Valued Multivariate Time Series

    stat.ME 2026-07 accept novelty 6.0 of 10

    Analytic standard errors and joint asymptotic normality are established for Yule-Walker estimators of latent Gaussian VAR parameters in copula-style discrete-valued multivariate time series.

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