SPIDER - IV. Optical and NIR color gradients in Early-type galaxies: New Insights into Correlations with Galaxy Properties
F. La Barbera, R.R. de Carvalho, I.G. de la Rosa, R.R. Gal, R., Swindle, P.A.A. Lopes

TL;DR
This study analyzes stellar population gradients in over 4,500 early-type galaxies using multi-band photometry and spectroscopy, revealing how these gradients correlate with galaxy mass, age, metallicity, and alpha/Fe, providing new insights into galaxy evolution.
Contribution
Introduces a novel approach using combined color information to constrain age and metallicity gradients in early-type galaxies, linking these to galaxy properties and stellar population parameters.
Findings
Age gradients increase with galaxy mass for the most massive ETGs.
Metallicity gradients decrease with increasing mass and alpha/Fe.
A significant anti-correlation exists between color gradient and alpha-enhancement.
Abstract
We present an analysis of stellar population gradients in 4,546 Early-Type Galaxies with photometry in along with optical spectroscopy. A new approach is described which utilizes color information to constrain age and metallicity gradients. Defining an effective color gradient, , which incorporates all of the available color indices, we investigate how varies with galaxy mass proxies, i.e. velocity dispersion, stellar (M_star) and dynamical (M_dyn) masses, as well as age, metallicity, and alpha/Fe. ETGs with M_dyn larger than 8.5 x 10^10, M_odot have increasing age gradients and decreasing metallicity gradients wrt mass, metallicity, and enhancement. We find that velocity dispersion and alpha/Fe are the main drivers of these correlations. ETGs with 2.5 x 10^10 M_odot =< M_dyn =< 8.5 x 10^10 M_odot, show no correlation of age, metallicity, and…
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