Context. In view of the recent problem regarding the dynamical modelling of winds of M-type AGB stars (insufficient radiation pressure on silicate grains), some of the basic assumptions of these models need to be re-evaluated critically. Aims. Accepting the conclusion that non-grey effects will force silicate grains to be virtually Fe-free, the viability of driving winds with micron-sized Fe-free silicates, instead of small particles, is examined. Methods. Using both simple estimates and detailed dynamical atmosphere and wind models, it is demonstrated that radiation pressure on Fe-free silicate grains is sufficient to drive outflows if the restriction to the small particle limit is relaxed, and prevailing thermodynamic cond...
Context. It is well established that the winds of carbon-rich AGB stars (carbon stars) can be driven...
It is a matter of fact that stars are subject to mass loss events which may be periodic, semi-perio...
New dynamical models for dust-driven winds of oxygen-rich AGB stars are presented which include freq...
Context. In view of the recent problem regarding the dynamical modelling of winds of M-type AGB star...
Context.Current knowledge suggests that the dust-driven wind scenario provides a realistic framewor...
Mass loss, in the form of slow stellar winds, is a decisive factor for the evolution of cool luminou...
Context. The winds observed around asymptotic giant branch (AGB) stars are generally attributed to r...
Current knowledge suggests that the dust-driven wind scenario provides a realistic framework for und...
Context. Stellar winds observed in asymptotic giant branch (AGB) stars are usually attributed to a c...
Aims.It is commonly assumed that the massive winds of AGB stars are dust-driven and pulsation-enhan...
Context. The heavy mass loss observed in evolved asymptotic giant branch stars is usually attributed...
Context. The heavy mass loss observed in evolved asymptotic giant branch (AGB) stars is us...
Context. The heavy mass loss observed in evolved asymptotic giant branch (AGB) stars is usually attr...
Context. The heavy mass loss observed in evolved asymptotic giant branch stars is usually attributed...
Aim. In this project, theoretical models of dust driven winds of asymptotic giant branch (AGB) stars...
Context. It is well established that the winds of carbon-rich AGB stars (carbon stars) can be driven...
It is a matter of fact that stars are subject to mass loss events which may be periodic, semi-perio...
New dynamical models for dust-driven winds of oxygen-rich AGB stars are presented which include freq...
Context. In view of the recent problem regarding the dynamical modelling of winds of M-type AGB star...
Context.Current knowledge suggests that the dust-driven wind scenario provides a realistic framewor...
Mass loss, in the form of slow stellar winds, is a decisive factor for the evolution of cool luminou...
Context. The winds observed around asymptotic giant branch (AGB) stars are generally attributed to r...
Current knowledge suggests that the dust-driven wind scenario provides a realistic framework for und...
Context. Stellar winds observed in asymptotic giant branch (AGB) stars are usually attributed to a c...
Aims.It is commonly assumed that the massive winds of AGB stars are dust-driven and pulsation-enhan...
Context. The heavy mass loss observed in evolved asymptotic giant branch stars is usually attributed...
Context. The heavy mass loss observed in evolved asymptotic giant branch (AGB) stars is us...
Context. The heavy mass loss observed in evolved asymptotic giant branch (AGB) stars is usually attr...
Context. The heavy mass loss observed in evolved asymptotic giant branch stars is usually attributed...
Aim. In this project, theoretical models of dust driven winds of asymptotic giant branch (AGB) stars...
Context. It is well established that the winds of carbon-rich AGB stars (carbon stars) can be driven...
It is a matter of fact that stars are subject to mass loss events which may be periodic, semi-perio...
New dynamical models for dust-driven winds of oxygen-rich AGB stars are presented which include freq...