Fornax 3D project: assessing the diversity of IMF and stellar population maps within the Fornax Cluster
I. Mart\'in-Navarro, F. Pinna, L. Coccato, J. Falc\'on-Barroso, G. van, de Ven, M. Lyubenova, E. M. Corsini, K. Fahrion, D. A. Gadotti, E. Iodice, R., M. McDermid, A. Poci, M. Sarzi, T. W. Spriggs, S. Viaene, P. T. de Zeeuw, and, L. Zhu

TL;DR
This study investigates the two-dimensional variations of the initial mass function (IMF) and stellar populations within 23 quiescent galaxies in the Fornax Cluster, revealing complex behaviors not solely explained by metallicity.
Contribution
It provides the first detailed spatially resolved maps of IMF variations in a galaxy cluster, highlighting the complexity and multiple factors influencing the IMF beyond metallicity.
Findings
IMF maps show diverse behaviors and substructures.
Metallicity alone cannot explain IMF variations.
All galaxies exhibit positive radial [Mg/Fe] gradients.
Abstract
The stellar initial mass function (IMF) is central to our interpretation of astronomical observables and to our understanding of most baryonic processes within galaxies. The universality of the IMF, suggested by observations in our own Milky Way, has been thoroughly revisited due to the apparent excess of low-mass stars in the central regions of massive quiescent galaxies. As part of the efforts within the Fornax 3D project, we aim to characterize the two-dimensional IMF variations in a sample of 23 quiescent galaxies within the Fornax cluster. For each galaxy in the sample, we measured the mean age, metallicity, [Mg/Fe], and IMF slope maps from spatially resolved integrated spectra. The IMF maps show a variety of behaviors and internal substructures, roughly following metallicity variations. However, metallicity alone is not able to fully explain the complexity exhibited by the IMF…
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