Stellar winds are an important aspect of our understanding of the evolution of massive stars and their input into the interstellar medium. Here we present solutions for the velocity field and mass-loss rates for stellar outflows as well as for the case of mass accretion through the use of the so-called Lambert W-function. For the case of a radiation-driven wind, the velocity field is obtained analytically using a parameterised description for the line acceleration that only depends on radius, which we obtain from Monte-Carlo multi-line radiative transfer calculations. In our form of the equation of motion the critical point is the sonic point. We also derive an approximate analytical solution for the supersonic flow which closely resembles ...
Context. Mass loss through radiatively line-driven winds is central to our understanding of the evol...
We investigate the effect of rotation on the maximum mass-loss rate due to an optically-thin radiati...
Massive stars present strong stellar winds that are described by the radiation driven wind theory. A...
We present solutions for the velocity field and mass-loss rates for 2D axisymmetric outflows, as wel...
Context. Mass loss from massive stars forms an important aspect of the evolution of massive stars, a...
Context. Radiation-driven mass loss plays a key role in the life cycles of massive stars. However, b...
Accurate mass-loss rates and terminal velocities from massive stars winds are essential to obtain sy...
We develop a theoretical treatment that allows us to determine the maximum mass-loss rate of a hot ...
A new, very fast approximate method is presented to determine mass-loss rates of O-stars from H_#alp...
Accurate mass-loss rate estimates are crucial keys in the study of wind properties of massive stars ...
Context. Mass loss from massive stars forms an important aspect of the evolution of massive stars, a...
Accurate mass-loss rate estimates are crucial keys in the study of wind properties of massive stars ...
Context. Vigorous mass loss in the classical Wolf-Rayet (WR) phase is important for the late evoluti...
Context. The stellar mass loss rate is important for the rotational evolution of a star and for its ...
We calculated the influence of the limb-darkened finite-disk correction factor in the theory of radi...
Context. Mass loss through radiatively line-driven winds is central to our understanding of the evol...
We investigate the effect of rotation on the maximum mass-loss rate due to an optically-thin radiati...
Massive stars present strong stellar winds that are described by the radiation driven wind theory. A...
We present solutions for the velocity field and mass-loss rates for 2D axisymmetric outflows, as wel...
Context. Mass loss from massive stars forms an important aspect of the evolution of massive stars, a...
Context. Radiation-driven mass loss plays a key role in the life cycles of massive stars. However, b...
Accurate mass-loss rates and terminal velocities from massive stars winds are essential to obtain sy...
We develop a theoretical treatment that allows us to determine the maximum mass-loss rate of a hot ...
A new, very fast approximate method is presented to determine mass-loss rates of O-stars from H_#alp...
Accurate mass-loss rate estimates are crucial keys in the study of wind properties of massive stars ...
Context. Mass loss from massive stars forms an important aspect of the evolution of massive stars, a...
Accurate mass-loss rate estimates are crucial keys in the study of wind properties of massive stars ...
Context. Vigorous mass loss in the classical Wolf-Rayet (WR) phase is important for the late evoluti...
Context. The stellar mass loss rate is important for the rotational evolution of a star and for its ...
We calculated the influence of the limb-darkened finite-disk correction factor in the theory of radi...
Context. Mass loss through radiatively line-driven winds is central to our understanding of the evol...
We investigate the effect of rotation on the maximum mass-loss rate due to an optically-thin radiati...
Massive stars present strong stellar winds that are described by the radiation driven wind theory. A...