We review the theory of electron-conduction opacity, a fundamental ingredient in the computation of low-mass stellar models; shortcomings and limitations of the existing calculations used in stellar evolution are discussed. We then present new determinations of the electron-conduction opacity in stellar conditions for an arbitrary chemical composition, that improve over previous works and, most importantly, cover the whole parameter space relevant to stellar evolution models (i.e., both the regime of partial and high electron degeneracy). A detailed comparison with the currently used tabulations is also performed. The impact of our new opacities on the evolution of low-mass stars is assessed by computing stellar models along both the H- and...
Recently, Bailey et al. (2015) made a direct measurement of the Iron opacity at the physical conditi...
A theoretical study of Population II variables has been carried out using the nonlinear approach and...
Context. Oxygen is the third most common element in the Universe. The measurement of oxygen lines in...
We review the theory of electron-conduction opacity, a fundamental ingredient in the computation of ...
An in-depth analysis of the stellar matter resistance to energy transport, the opacity, in the cont...
In this thesis we investigate the importance of various elements of the input physics and other para...
Stellar Opacities are a crucial factor in determining the structure, evolution and observable proper...
For high temperatures and densities, stellar opacities obtained from the Opacity Project (OP) were s...
Based on the work of OPAL (Iglesias & Rogers 1996) and Alexander & Ferguson (1994), we construct a s...
Spectral line broadening has many applications in astrophysics and plasma physics. Calculations of l...
As stars evolve, their surfaces may be altered by several different mechanisms. These introduce dist...
International audienceMethods using average‐atom models in order to calculate dense‐plasma opacities...
International audienceContext. Oxygen is the third most common element in the Universe. The measurem...
The model atmosphere code STERNE has evolved considerably over the years. Most recently, attention h...
We describe an opacity sampled version of the LTE model atmosphere code STERNE with revised continuo...
Recently, Bailey et al. (2015) made a direct measurement of the Iron opacity at the physical conditi...
A theoretical study of Population II variables has been carried out using the nonlinear approach and...
Context. Oxygen is the third most common element in the Universe. The measurement of oxygen lines in...
We review the theory of electron-conduction opacity, a fundamental ingredient in the computation of ...
An in-depth analysis of the stellar matter resistance to energy transport, the opacity, in the cont...
In this thesis we investigate the importance of various elements of the input physics and other para...
Stellar Opacities are a crucial factor in determining the structure, evolution and observable proper...
For high temperatures and densities, stellar opacities obtained from the Opacity Project (OP) were s...
Based on the work of OPAL (Iglesias & Rogers 1996) and Alexander & Ferguson (1994), we construct a s...
Spectral line broadening has many applications in astrophysics and plasma physics. Calculations of l...
As stars evolve, their surfaces may be altered by several different mechanisms. These introduce dist...
International audienceMethods using average‐atom models in order to calculate dense‐plasma opacities...
International audienceContext. Oxygen is the third most common element in the Universe. The measurem...
The model atmosphere code STERNE has evolved considerably over the years. Most recently, attention h...
We describe an opacity sampled version of the LTE model atmosphere code STERNE with revised continuo...
Recently, Bailey et al. (2015) made a direct measurement of the Iron opacity at the physical conditi...
A theoretical study of Population II variables has been carried out using the nonlinear approach and...
Context. Oxygen is the third most common element in the Universe. The measurement of oxygen lines in...