Implications of a variable IMF for the interpretation of observations of galaxy populations
arXiv:1603.05281 · doi:10.1093/mnras/stw1808
Abstract
We investigate the effect of a metallicity-dependent stellar initial mass function (IMF), as deduced observationally by Martin-Navarro et al. (2015c), on the inferred stellar masses and star formation rates (SFRs) of a representative sample of 186,886 SDSS galaxies. Relative to a Chabrier IMF, for which we show the implied masses to be close to minimal, the inferred masses increase in both the low- and high-metallicity regimes due to the addition of stellar remnants and dwarf stars, respectively. The resulting galaxy stellar mass function (GSMF) shifts toward higher masses by 0.5 dex, without affecting the high-mass slope (and thus the need for effective quenching). The implied low-redshift SFR density increases by an order of magnitude. However, these results depend strongly on the assumed IMF parametrisation, which is not directly constrained by the observations. Varying the low-end IMF slope instead of the high-end IMF slope, while maintaining the same dwarf-to-giant ratio, results in a much more modest GSMF shift of 0.2 dex and a 10 per cent increase in the SFR density relative to the Chabrier IMF. A bottom-heavy IMF during the late, metal-rich evolutionary stage of a galaxy would help explain the rapid quenching and the bimodality in the galaxy population by on the one hand making galaxies less quenched (due to the continued formation of dwarf stars) and on the other hand reducing the gas consumption timescale. We conclude that the implications of the observational evidence for a variable IMF could vary from absolutely dramatic to mild but significant.
Accepted by MNRAS, 17 pages, 13 figures, 1 table
References in corpus (19)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- A systematic variation of the stellar initial mass function in early-type galaxies
- PRIMUS: Constraints on Star Formation Quenching and Galaxy Merging, and the Evolution of the Stellar Mass Function From z=0-1
- COLD GASS, an IRAM legacy survey of molecular gas in massive galaxies: I. Relations between H2, HI, stellar content and structural properties
- Stellar Masses and SFRs for 1M Galaxies from SDSS and WISE
- Insights on the stellar mass-metallicity relation from the CALIFA survey
- Synthetic Galaxy Images and Spectra from the Illustris Simulation
- The distribution of atomic hydrogen in EAGLE galaxies: morphologies, profiles, and HI holes
- It's not easy being green: The evolution of galaxy colour in the EAGLE simulation
- Diverging UV and Halpha fluxes of star forming galaxies predicted by the IGIMF theory
- Variations in the initial mass function in early-type galaxies: A critical comparison between dynamical and spectroscopic results
- The SLUGGS survey: Exploring the metallicity gradients of nearby early-type galaxies to large radii
- The initial mass function of a massive relic galaxy
- Further evidence for a time-dependent initial mass function in massive early-type galaxies
- Connection between dynamically derived IMF normalisation and stellar population parameters
- The chemical evolution of galaxies with a variable IGIMF
- The stellar initial mass function at 0.9<z<1.5
- Evidence for Two Distinct Stellar Initial Mass Functions : Probing for Clues to the Dichotomy
- An assessment of the evidence from ATLAS3D for a variable initial mass function
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- The evolution of CNO isotopes: a new window on cosmic star-formation history and the stellar IMF in the age of ALMA
- The Dawes Review 8: Measuring the Stellar Initial Mass Function
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- IMF radial gradients in most massive early-type galaxies
- The Fornax 3D project: a two-dimensional view of the stellar initial mass function in the massive lenticular galaxy FCC 167
- EPOCHS IV: SED Modelling Assumptions and their impact on the Stellar Mass Function at 6.5 < z < 13.5 using PEARLS and public JWST observations
- Spatially resolved variations of the IMF mass normalisation in early-type galaxies as probed by molecular gas kinematics
- SDSS-IV MaNGA: Stellar initial mass function variation inferred from Bayesian analysis of the integral field spectroscopy of early type galaxies
- gradients driven by IMF variation: Large impact on dynamical stellar mass estimates
- Radial measurements of IMF-sensitive absorption features in two massive ETGs
- Calibrated, cosmological hydrodynamical simulations with variable IMFs I: Method and effect on global galaxy scaling relations
- Simulating a metallicity-dependent initial mass function: Consequences for feedback and chemical abundances
- Stellar mass functions and implications for a variable IMF
- Mapping Accreted Stars in Early-Type Galaxies Across the Mass-Size Plane
- Calibrated, cosmological hydrodynamical simulations with variable IMFs II: Correlations between the IMF and global galaxy properties
- Wolf-Rayet galaxies in SDSS-IV MaNGA. II. Metallicity dependence of the high-mass slope of the stellar initial mass function
- A common origin for the Fundamental Plane of quiescent and star-forming galaxies in the EAGLE simulations
- Dynamical masses of brightest cluster galaxies II: constraints on the stellar IMF
- Hierarchical Bayesian inference of the Initial Mass Function in Composite Stellar Populations
- Inferring Galactic Parameters from Chemical Abundances: A Multi-Star Approach
- Fornax 3D project: assessing the diversity of IMF and stellar population maps within the Fornax Cluster