The Dartmouth Stellar Evolution Database
Aaron Dotter, Brian Chaboyer, Darko Jevremovic, Veselin Kostov, E., Baron, J. W. Ferguson

TL;DR
The Dartmouth Stellar Evolution Database provides comprehensive stellar evolution models and isochrones across a wide range of compositions, ages, and photometric systems, supporting detailed analysis of stellar populations.
Contribution
It offers an extensive, publicly accessible set of stellar evolution tracks and isochrones with advanced physics for diverse compositions and ages, filling gaps in current models.
Findings
Models cover [Fe/H] from -2.5 to +0.5
Tracks include masses from 0.1 to 4 Msun
Isochrones available for ages as young as 250 Myr
Abstract
The ever-expanding depth and quality of photometric and spectroscopic observations of stellar populations increase the need for theoretical models in regions of age-composition parameter space that are largely unexplored at present. Stellar evolution models that employ the most advanced physics and cover a wide range of compositions are needed to extract the most information from current observations of both resolved and unresolved stellar populations. The Dartmouth Stellar Evolution Database is a collection of stellar evolution tracks and isochrones that spans a range of [Fe/H] from -2.5 to +0.5, [alpha/Fe] from -0.2 to +0.8 (for [Fe/H] <=0) or +0.2 (for [Fe/H] >0), and initial He mass fractions from Y=0.245 to 0.40. Stellar evolution tracks were computed for masses between 0.1 and 4 Msun, allowing isochrones to be generated for ages as young as 250 Myr. For the range in masses where…
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