Based on detailed 2D and 3D numerical radiation-hydrodynamics (RHD) simulations of time-dependent compressible convection, we have studied the dynamics and thermal structure of the convective surface layers of a prototypical late-type M-dwarf (Teff~2800K log(g)=5.0, solar chemical composition). The RHD models predict stellar granulation qualitatively similar to the familiar solar pattern. Quantitatively, the granular cells show a convective turn-over time scale of ~100s, and a horizontal scale of 80km; the relative intensity contrast of the granular pattern amounts to 1.1%, and root-mean-square vertical velocities reach 240m/s at maximum. Deviations from radiative equilibrium in the higher, formally convectively stable atmospheric layers ar...
Context. Observationally, spectra of brown dwarfs indicate the presence of dust in their atmospheres...
We show that contrary to what is expected from 1D stationary model atmospheres, 3D hydrodynamical mo...
We constructed hydrodynamical model atmospheres for mid M-type main-, as well as pre-main-sequence ...
Based on detailed 2D and 3D numerical radiation-hydrodynamics (RHD) simulations of time-dependent c...
Based on detailed 2D and 3D numerical radiation hydrodynamicscalculations of time-dependent compress...
Based on detailed 2D numerical radiation hydrodynamics (RHD) calculations of time-dependent compress...
We constructed hydrodynamical model atmospheres for mid M-type main-, as well as pre-main-sequence (...
We present the first results from 3D hydrodynamical M-dwarf atmosphere simulations with the CO5BOLD ...
We report on recent progress in hydrodynamical modelling of the surfacelayers of late M- and L-type ...
We discuss the properties of convection and its influence on the structure and observable properties...
Based on detailed 2D numerical radiation hydrodynamics (RHD) calculations of time-dependent compress...
Aims. We investigate the relation between 1D atmosphere models that rely on the mixing length theory...
Aims. We investigate the relation between 1D atmosphere models that rely on the mixing length theory...
International audienceContext. Observationally, spectra of brown dwarfs indicate the presence of dus...
Context. Observationally, spectra of brown dwarfs indicate the presence of dust in their atmospheres...
We show that contrary to what is expected from 1D stationary model atmospheres, 3D hydrodynamical mo...
We constructed hydrodynamical model atmospheres for mid M-type main-, as well as pre-main-sequence ...
Based on detailed 2D and 3D numerical radiation-hydrodynamics (RHD) simulations of time-dependent c...
Based on detailed 2D and 3D numerical radiation hydrodynamicscalculations of time-dependent compress...
Based on detailed 2D numerical radiation hydrodynamics (RHD) calculations of time-dependent compress...
We constructed hydrodynamical model atmospheres for mid M-type main-, as well as pre-main-sequence (...
We present the first results from 3D hydrodynamical M-dwarf atmosphere simulations with the CO5BOLD ...
We report on recent progress in hydrodynamical modelling of the surfacelayers of late M- and L-type ...
We discuss the properties of convection and its influence on the structure and observable properties...
Based on detailed 2D numerical radiation hydrodynamics (RHD) calculations of time-dependent compress...
Aims. We investigate the relation between 1D atmosphere models that rely on the mixing length theory...
Aims. We investigate the relation between 1D atmosphere models that rely on the mixing length theory...
International audienceContext. Observationally, spectra of brown dwarfs indicate the presence of dus...
Context. Observationally, spectra of brown dwarfs indicate the presence of dust in their atmospheres...
We show that contrary to what is expected from 1D stationary model atmospheres, 3D hydrodynamical mo...
We constructed hydrodynamical model atmospheres for mid M-type main-, as well as pre-main-sequence ...