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The chemical evolution of galaxies within the IGIMF theory: the [alpha/Fe] ratios and downsizing

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arxiv 0903.2395 v1 pith:EALFNALP submitted 2009-03-13 astro-ph.CO

classification astro-ph.CO
keywords galaxiesalphaigimfratioschemicaldownsizingevolutionformation
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The chemical evolution of galaxies is investigated within the framework of the star formation rate (SFR) dependent integrated galactic initial mass function (IGIMF). We study how the global chemical evolution of a galaxy and in particular how [alpha/Fe] abundance ratios are affected by the predicted steepening of the IGIMF with decreasing SFR. We use analytical and semi-analytical calculations to evaluate the mass-weighted and luminosity-weighted [alpha/Fe] ratios in early-type galaxies of different masses. The models with the variable IGIMF produce a [alpha/Fe] vs. velocity dispersion relation which has the same slope as the observations of massive galaxies, irrespective of the model parameters, provided that the star formation duration inversely correlates with the mass of the galaxy (downsizing). These models also produce steeper [alpha/Fe] vs. sigma relations in low-mass early-type galaxies and this trend is consistent with the observations. Constant IMF models are able to reproduce the [alpha/Fe] ratios in large elliptical galaxies as well, but they do not predict this change of slope for small galaxies. In order to obtain the best fit between our results and the observations, the downsizing effect (i.e. the shorter duration of the star formation in larger galaxies) must be milder than previously thought.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Baryonic mass budgets in the central regions of the Bullet Cluster and their consistency with strong lensing in MOND

    astro-ph.GA 2026-06 unverdicted novelty 6.0 of 10

    MOND strong-lensing masses in the Bullet Cluster’s three BCG cores lie between lower and upper IGIMF baryonic mass estimates from JWST photometry.

  2. The Impact of Early Massive Galaxy Formation on the Cosmic Microwave Background

    astro-ph.GA 2025-05 reject novelty 6.0 of 10

    Massive early-type galaxies forming at z≈15-20 with a top-heavy stellar IMF could inject enough dust-reprocessed light to account for 1.4% to all of the present-day CMB energy density.

  3. Chemical Evolution of Galaxies: Past, Present and Future

    astro-ph.GA 2026-07 unverdicted

    A single-author review of galactic chemical-evolution modeling, centered on the time-delay interpretation of [X/Fe] vs [Fe/H] as a tool for galactic archaeology.

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