Massive stars are key sources of radiative, kinetic, and chemical feedback in the universe. Grids of massive star models computed by different groups each using their own codes, input physics choices and numerical approximations, however, lead to inconsistent results for the same stars. We use three of these 1D codes---GENEC, KEPLER and MESA---to compute non-rotating stellar models of $15~\mathrm{M}_\odot$, $20~\mathrm{M}_\odot$, and $25~\mathrm{M}_\odot$ and compare their nucleosynthesis. We follow the evolution from the main sequence until the end of core helium burning. The GENEC and KEPLER models hold physics assumptions used in large grids of published models. The MESA code was set up to use convective core overshooting such that the C...
Context. Galactic chemical evolution models are useful tools for interpreting the large bo...
Context. Galactic chemical evolution models are useful tools for interpreting the large bo...
Context. Galactic chemical evolution models are useful tools for interpreting the large bo...
Massive stars are key sources of radiative, kinetic, and chemical feedback in the universe. Grids of...
Massive stars are key sources of radiative, kinetic and chemical feedback in the Universe. Grids of ...
Massive stars are key sources of radiative, kinetic and chemical feedback in the Universe. Grids of ...
Massive stars are key sources of radiative, kinetic and chemical feedback in the Universe. Grids of ...
We present two grids of evolutionary stellar models covering the phases of core H- and He-burning fo...
I test the predictive power of the stellar evolution code TYCHO. Systematic errors are present in th...
MESA inlists associated with Jones et al. (2015). MESA version 3709. Publication DOI: 10.1093/mnras...
We present two grids of evolutionary stellar models covering the phases of core H- and He-burning fo...
Reliable evolutionary tracks are a backbone of stellar astrophysics; they are an essential ingredien...
Context. Galactic chemical evolution models are useful tools for interpreting the large body of high...
Context. The evolution of massive stars is not fully understood. The relation between different type...
17 pages, 12 figures. Accepted by Astronomy & AstrophysicsInternational audienceIn this paper, we co...
Context. Galactic chemical evolution models are useful tools for interpreting the large bo...
Context. Galactic chemical evolution models are useful tools for interpreting the large bo...
Context. Galactic chemical evolution models are useful tools for interpreting the large bo...
Massive stars are key sources of radiative, kinetic, and chemical feedback in the universe. Grids of...
Massive stars are key sources of radiative, kinetic and chemical feedback in the Universe. Grids of ...
Massive stars are key sources of radiative, kinetic and chemical feedback in the Universe. Grids of ...
Massive stars are key sources of radiative, kinetic and chemical feedback in the Universe. Grids of ...
We present two grids of evolutionary stellar models covering the phases of core H- and He-burning fo...
I test the predictive power of the stellar evolution code TYCHO. Systematic errors are present in th...
MESA inlists associated with Jones et al. (2015). MESA version 3709. Publication DOI: 10.1093/mnras...
We present two grids of evolutionary stellar models covering the phases of core H- and He-burning fo...
Reliable evolutionary tracks are a backbone of stellar astrophysics; they are an essential ingredien...
Context. Galactic chemical evolution models are useful tools for interpreting the large body of high...
Context. The evolution of massive stars is not fully understood. The relation between different type...
17 pages, 12 figures. Accepted by Astronomy & AstrophysicsInternational audienceIn this paper, we co...
Context. Galactic chemical evolution models are useful tools for interpreting the large bo...
Context. Galactic chemical evolution models are useful tools for interpreting the large bo...
Context. Galactic chemical evolution models are useful tools for interpreting the large bo...