International audienceMicroscopic diffusion processes (such as radiative levitation, gravitational settling, and thermal diffusion) in the outer layers of stars are important because they may give rise to surface abundance anomalies. Here we compare radiative accelerations (grad) derived from the new Opacity Project (OP) data with those computed from OPAL and some previous data from OP. For the case in which we have full data from OPAL (carbon, five points in the rho-T plane), the differences in the Rosseland mean opacities between OPAL and the new OP data are within 12% and are less than 30% between new OP and previous OP data (OP1). The radiative accelerations grad differ at up to the 17% level when compared to OPAL and up to the 38% leve...
Context. With certain assumptions, radiative energy transport can be modelled by the diffusion appro...
International audienceAccurate determination of radiative accelerations of the elements is critical ...
Monochromatic opacities from the Opacity Project (OP) have been augmented by hitherto missing inner-...
International audienceMicroscopic diffusion processes (such as radiative levitation, gravitational s...
Here, we compare radiative accelerations (g_rad) derived from the new Opacity Project (OP) data with...
International audienceAtomic diffusion processes may significantly change the distribution of chemic...
International audienceOpacity is a fundamental quantity for stellar modeling, and it plays an essent...
International audienceContext. Chemical element transport processes are among the crucial physical p...
Abstract. The abundances of some of the most common elements in the Sun has been called into questio...
Using the code AUTOSTRUCTURE, extensive calculations of inner-shell atomic data have been made for t...
The accuracy with which it is possible to calculate theoretically the positions of energy levels a...
Consistent stellar evolution models of F stars (1.1 to 1:5 M fi ) are calculated with radiative forc...
Using the code autostructure, extensive calculations of inner-shell atomic data have been made for t...
The revision of the standard Los Alamos opacities in the 1980–1990s by a group from the Lawren...
Using the code autostructure, extensive calculations of inner-shell atomic data have been made for t...
Context. With certain assumptions, radiative energy transport can be modelled by the diffusion appro...
International audienceAccurate determination of radiative accelerations of the elements is critical ...
Monochromatic opacities from the Opacity Project (OP) have been augmented by hitherto missing inner-...
International audienceMicroscopic diffusion processes (such as radiative levitation, gravitational s...
Here, we compare radiative accelerations (g_rad) derived from the new Opacity Project (OP) data with...
International audienceAtomic diffusion processes may significantly change the distribution of chemic...
International audienceOpacity is a fundamental quantity for stellar modeling, and it plays an essent...
International audienceContext. Chemical element transport processes are among the crucial physical p...
Abstract. The abundances of some of the most common elements in the Sun has been called into questio...
Using the code AUTOSTRUCTURE, extensive calculations of inner-shell atomic data have been made for t...
The accuracy with which it is possible to calculate theoretically the positions of energy levels a...
Consistent stellar evolution models of F stars (1.1 to 1:5 M fi ) are calculated with radiative forc...
Using the code autostructure, extensive calculations of inner-shell atomic data have been made for t...
The revision of the standard Los Alamos opacities in the 1980–1990s by a group from the Lawren...
Using the code autostructure, extensive calculations of inner-shell atomic data have been made for t...
Context. With certain assumptions, radiative energy transport can be modelled by the diffusion appro...
International audienceAccurate determination of radiative accelerations of the elements is critical ...
Monochromatic opacities from the Opacity Project (OP) have been augmented by hitherto missing inner-...