The SAURON project - XVII. Stellar population analysis of the absorption line strength maps of 48 early-type galaxies
Harald Kuntschner, Eric Emsellem, Roland Bacon, Michele Cappellari,, Roger L. Davies, P. Tim de Zeeuw, Jes\'us Falc\'on-Barroso, Davor, Krajnovi\'c, Richard M. McDermid, Reynier F. Peletier, Marc Sarzi, Kristen L., Shapiro, Remco C. E. van den Bosch, Glenn van de Ven

TL;DR
This study analyzes the stellar populations of 48 early-type galaxies using absorption line strength maps, revealing diverse ages, metallicities, and star formation histories, with distinctions between fast and slow rotators.
Contribution
It provides a detailed two-dimensional stellar population analysis of early-type galaxies, linking kinematic components to stellar population properties and star formation history.
Findings
40% of galaxies show signs of young stellar populations.
Post-starburst features are limited to low-mass systems.
Fast rotators often have young, metal-rich circumnuclear disks.
Abstract
(Abridged) We present a stellar population analysis of the absorption line strength maps for 48 early-type galaxies from the SAURON sample. Using the line strength index maps of Hbeta, Fe5015, and Mgb, measured in the Lick/IDS system and spatially binned to a constant signal-to-noise, together with predictions from up-to-date stellar population models, we estimate the simple stellar population-equivalent (SSP-equivalent) age, metallicity and abundance ratio [alpha/Fe] over a two-dimensional field extending up to approximately one effective radius. We find a large range of SSP-equivalent ages in our sample, of which ~40% of the galaxies show signs of a contribution from a young stellar population. The most extreme cases of post-starburst galaxies, with SSP-equivalent ages of <=3 Gyr observed over the full field-of-view, and sometimes even showing signs of residual star-formation, are…
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