Stellar mass as the "glocal" driver of galaxies' stellar population properties
arXiv:2202.03975 · doi:10.1093/mnras/stac370
Abstract
The properties of the stellar populations in a galaxy are known to correlate with the amount and the distribution of stellar mass. We take advantage of the maps of light-weighted mean stellar age Agewr and metallicity Z*wr for a sample of 362 galaxies from the integral-field spectroscopic survey CALIFA (summing up to >600,000 individual regions of approximately 1 kpc linear size), produced in our previous works, to investigate how these local properties react to the local stellar-mass surface density mu* and to the global total stellar mass M* and mean stellar-mass surface density <mu>e. We establish the existence of i) a dual mu*-Agewr relation, resulting in a young sequence and an old ridge, and ii) a mu*-Z*wr relation, overall independent of the age of the regions. The global mass parameters (M* and, possibly secondarily, <mu>e) determine the distribution of mu* in a galaxy and set the maximum attainable mu*, which increases with M*. M* affects the shape and normalization of the local relations up to a threshold mass of MSun, above which they remain unchanged. We conclude that stellar mass is a "glocal" (i.e. simultaneously global and local) driver of the stellar population properties. We consider how the local and global mass-age and mass-metallicity relations are connected, and in particular discuss how it is possible, from a single local relation, to produce two different global mass-metallicity relations for quiescent and star-forming galaxies respectively, as reported in the literature. Structural differences in these two classes of galaxies are key to explain the duality in global scaling relations and appear as essential in modelling the baryonic cycle of galaxies.
Accepted for publication on MNRAS
References in corpus (10)
- Detection of quiescent galaxies in a bicolor sequence from z=0-2
- Strangulation as the primary mechanism for shutting down star formation in galaxies
- xCOLD GASS: the complete IRAM-30m legacy survey of molecular gas for galaxy evolution studies
- An Objective Definition for the Main Sequence of Star-Forming Galaxies
- CALIFA: a diameter-selected sample for an integral field spectroscopy galaxy survey
- Insights on the stellar mass-metallicity relation from the CALIFA survey
- The SAURON Project - XIV. No escape from V: a global and local parameter in early-type galaxy evolution
- The CALIFA view on stellar angular momentum across the Hubble sequence
- Resolving the age bimodality of galaxy stellar populations on kpc scales
- Gravitational Potential and Surface Density Drive Stellar Populations -- II. Star-Forming Galaxies
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- The Stellar Chemical Abundances of Simulated Massive Galaxies at
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- Correcting the fiber-aperture bias affecting galaxy stellar populations in the Sloan Digital Sky Survey. Aperture corrections to absorption indices based on CALIFA integral field observations
- LEGA-C stellar populations scaling relations. II: Dissecting mass-complete archaeological trends and their evolution since z~0.7 with LEGA-C and SDSS
- Spatially resolved stellar-to-total dynamical mass relation: Radial variations, gradients and profiles of galaxy stellar populations
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