Accurate mass-loss rates and terminal velocities from massive stars winds are essential to obtain synthetic spectra from radiative transfer calculations and to determine the evolutionary path of massive stars. From a theoretical point of view, analytical expressions for the wind parameters and velocity profile would have many advantages over numerical calculations that solve the complex non-linear set of hydrodynamic equations. In a previous work, we obtained an analytical description for the fast wind regime. Now, we propose an approximate expression for the line-force in terms of new parameters and obtain a velocity profile closed-form solution (in terms of the Lambert W function) for the δ-slow regime. Using this analytical velocity prof...
Context. Mass loss from massive stars forms an important aspect of the evolution of massive stars, a...
We develop a model for the wind properties of cool main-sequence stars, which comprises their wind r...
An analytical procedure is developed to solve the magnetohydrodynamic equations for the stellar wind...
Accurate mass-loss rate estimates are crucial keys in the study of wind properties of massive stars ...
We calculated the influence of the limb-darkened finite-disk correction factor in the theory of radi...
Massive stars present strong stellar winds that are described by the radiation driven wind theory. A...
The theory of radiation-driven winds succeeded in describing terminal velocities and mass-loss rates...
Accurate mass-loss rate estimates are crucial keys in the study of wind properties of massive stars ...
Stellar winds are an important aspect of our understanding of the evolution of massive stars and the...
In the scenario of rotating radiation-driven wind theory for massive stars, three types of stationar...
In the scenario of rotating radiation-driven wind theory for massive stars, three types of stationar...
Context. Radiation-driven mass loss plays a key role in the life cycles of massive stars. However, b...
Context. For more than two decades, stellar atmosphere codes have been used to derive the stellar an...
Context. Mass loss through radiatively line-driven winds is central to our understanding of the evol...
The line driven- and rotation modulated-wind theory predicts an alternative slow solution, besides f...
Context. Mass loss from massive stars forms an important aspect of the evolution of massive stars, a...
We develop a model for the wind properties of cool main-sequence stars, which comprises their wind r...
An analytical procedure is developed to solve the magnetohydrodynamic equations for the stellar wind...
Accurate mass-loss rate estimates are crucial keys in the study of wind properties of massive stars ...
We calculated the influence of the limb-darkened finite-disk correction factor in the theory of radi...
Massive stars present strong stellar winds that are described by the radiation driven wind theory. A...
The theory of radiation-driven winds succeeded in describing terminal velocities and mass-loss rates...
Accurate mass-loss rate estimates are crucial keys in the study of wind properties of massive stars ...
Stellar winds are an important aspect of our understanding of the evolution of massive stars and the...
In the scenario of rotating radiation-driven wind theory for massive stars, three types of stationar...
In the scenario of rotating radiation-driven wind theory for massive stars, three types of stationar...
Context. Radiation-driven mass loss plays a key role in the life cycles of massive stars. However, b...
Context. For more than two decades, stellar atmosphere codes have been used to derive the stellar an...
Context. Mass loss through radiatively line-driven winds is central to our understanding of the evol...
The line driven- and rotation modulated-wind theory predicts an alternative slow solution, besides f...
Context. Mass loss from massive stars forms an important aspect of the evolution of massive stars, a...
We develop a model for the wind properties of cool main-sequence stars, which comprises their wind r...
An analytical procedure is developed to solve the magnetohydrodynamic equations for the stellar wind...