Context. With growing evidence for the existence of very massive stars at subsolar metallicity, there is an increased need for corresponding stellar evolution models. Aims. We present a dense model grid with a tailored input chemical composition appropriate for the Large Magellanic Cloud (LMC). Methods. We use a one-dimensional hydrodynamic stellar evolution code, which accounts for rotation, transport of angular momentum by magnetic fields, and stellar wind mass loss to compute our detailed models. We calculate stellar evolution models with initial masses from 70 to 500 M⊙ and with initial surface rotational velocities from 0 to 550 km s-1, covering the core-hydrogen burning phase of evolution. Results. We find ou...
Magnetic fields can drastically change predictions of evolutionary models of massive stars via mass-...
We present a dense grid of evolutionary tracks and isochrones of rotating massive main-sequence star...
Magnetic fields can drastically change predictions of evolutionary models of massive stars via mass-...
Context. With growing evidence for the existence of very massive stars at subsolar metallicity, ther...
Context. With growing evidence for the existence of very massive stars at subsolar metallicity, ther...
Context. With growing evidence for the existence of very massive stars at subsolar metallicity, ther...
Context. With growing evidence for the existence of very massive stars at subsolar metallicity, ther...
Context. Grids of stellar models, computed with the same physical ingredients, allow one to study t...
Context. Grids of stellar models, computed with the same physical ingredients, allow one to study th...
Rotation and the associated mixing has recently been included in massive star evolutionary models in...
Context. Grids of stellar models, computed with the same physical ingredients, allow one to study th...
Context. Grids of stellar models, computed with the same physical ingredients, allow one to study th...
peer reviewedContext. Grids of stellar models, computed with the same physical ingredients, allow on...
We present a dense grid of evolutionary tracks and isochrones of rotating massive main-sequence star...
We present a dense grid of evolutionary tracks and isochrones of rotating massive main-sequence star...
Magnetic fields can drastically change predictions of evolutionary models of massive stars via mass-...
We present a dense grid of evolutionary tracks and isochrones of rotating massive main-sequence star...
Magnetic fields can drastically change predictions of evolutionary models of massive stars via mass-...
Context. With growing evidence for the existence of very massive stars at subsolar metallicity, ther...
Context. With growing evidence for the existence of very massive stars at subsolar metallicity, ther...
Context. With growing evidence for the existence of very massive stars at subsolar metallicity, ther...
Context. With growing evidence for the existence of very massive stars at subsolar metallicity, ther...
Context. Grids of stellar models, computed with the same physical ingredients, allow one to study t...
Context. Grids of stellar models, computed with the same physical ingredients, allow one to study th...
Rotation and the associated mixing has recently been included in massive star evolutionary models in...
Context. Grids of stellar models, computed with the same physical ingredients, allow one to study th...
Context. Grids of stellar models, computed with the same physical ingredients, allow one to study th...
peer reviewedContext. Grids of stellar models, computed with the same physical ingredients, allow on...
We present a dense grid of evolutionary tracks and isochrones of rotating massive main-sequence star...
We present a dense grid of evolutionary tracks and isochrones of rotating massive main-sequence star...
Magnetic fields can drastically change predictions of evolutionary models of massive stars via mass-...
We present a dense grid of evolutionary tracks and isochrones of rotating massive main-sequence star...
Magnetic fields can drastically change predictions of evolutionary models of massive stars via mass-...