The evolution of the photometric properties of Local Group dwarf spheroidal galaxies
F. Calura (1), G. L. Lanfranchi (2), F. Matteucci (1,3) - ((1), INAF-Oss. Astronomico di Trieste, Italy; (2) Nucleo de Astrofisica, Teorica-UNICSUL, Brazil; (3) Dip. di Astronomia, Universita' di Trieste,, Italy)

TL;DR
This study models the chemical and photometric evolution of Local Group dwarf spheroidal galaxies, revealing their past active star formation phases and potential links to dwarf irregulars, with results matching observed properties.
Contribution
It introduces detailed chemical evolution models with updated nucleosynthesis, explaining the photometric properties and evolutionary paths of dwarf spheroidal galaxies.
Findings
Models reproduce observed abundance ratios and metallicity distributions.
Star formation history critically influences current photometric properties.
Dwarf spheroidals and irregulars may have shared similar properties in early evolution.
Abstract
We investigate the present-day photometric properties of the dwarf spheroidal galaxies in the Local Group. From the analysis of their integrated colours, we consider a possible link between dwarf spheroidals and giant ellipticals. From the analysis of the V vs (B-V) plot, we search for a possible evolutionary link between dwarf spheroidal galaxies (dSphs) and dwarf irregular galaxies (dIrrs). By means of chemical evolution models combined with a spectro-photometric model, we study the evolution of six Local Group dwarf spheroidal galaxies (Carina, Draco, Sagittarius, Sculptor, Sextans and Ursa Minor). The chemical evolution models, which adopt up-to-date nucleosynthesis from low and intermediate mass stars as well as nucleosynthesis and energetic feedback from supernovae type Ia and II, reproduce several observational constraints of these galaxies, such as abundance ratios versus…
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