Context. Dust formation in stellar outflows is initiated by the formation of some seed particles that form the growth centres for macroscopic dust grains. The nature of the seed particles for silicate dust in stellar outflows with an oxygen-rich element mixture is still an open question. Clustering of the abundant SiO molecules has been discussed several times as a possible mechanism and investigated both theoretically and by laboratory experiments. The initial results seemed to indicate, however, that condensation temperatures obtained by model calculations based on this mechanism are significant lower than what is really observed, which renders SiO nucleation unlikely. ...
The purpose of this study is to understand the processes underpinning the formation of dust in oxyge...
We investigate the impact of dust-induced gas fragmentation on the formation of the first low-mass, ...
To explain observations of abundant circumstellar dust and high stellar wind velocity, most models s...
Context. Dust formation in stellar outflows is initiated by the formation of some seed par...
Context. The formation of dust in winds of cool and highly evolved stars and the rate of i...
Context. Clouds form in atmospheres of brown dwarfs and planets. The cloud particle formation proces...
Amongst chemical reactions (1) in the molecular universe (2), condensation reaction is probably the ...
Understanding the nature of dust condensation in the outflow from oxygen-rich AGB stars is a continu...
Context. The cloud formation process starts with the formation of seed particles, after which, surfa...
Context. The cloud formation process starts with the formation of seed particles, after which, surfa...
We investigate the impact of dust-induced gas fragmentation on the formation of the first low-mass, ...
Silicon monoxide (SiO) is a structurally complex compound exhibiting differentiated oxide-rich and s...
Aims. The main goal of the present study is to determine the fractional SiO abundance in high-mass s...
Dust formation around cool giant and supergiant stars is examined in terms of grain formulation. Opt...
Silicon monoxide (SiO) is a structurally complex compound exhibiting differentiated oxide-rich and s...
The purpose of this study is to understand the processes underpinning the formation of dust in oxyge...
We investigate the impact of dust-induced gas fragmentation on the formation of the first low-mass, ...
To explain observations of abundant circumstellar dust and high stellar wind velocity, most models s...
Context. Dust formation in stellar outflows is initiated by the formation of some seed par...
Context. The formation of dust in winds of cool and highly evolved stars and the rate of i...
Context. Clouds form in atmospheres of brown dwarfs and planets. The cloud particle formation proces...
Amongst chemical reactions (1) in the molecular universe (2), condensation reaction is probably the ...
Understanding the nature of dust condensation in the outflow from oxygen-rich AGB stars is a continu...
Context. The cloud formation process starts with the formation of seed particles, after which, surfa...
Context. The cloud formation process starts with the formation of seed particles, after which, surfa...
We investigate the impact of dust-induced gas fragmentation on the formation of the first low-mass, ...
Silicon monoxide (SiO) is a structurally complex compound exhibiting differentiated oxide-rich and s...
Aims. The main goal of the present study is to determine the fractional SiO abundance in high-mass s...
Dust formation around cool giant and supergiant stars is examined in terms of grain formulation. Opt...
Silicon monoxide (SiO) is a structurally complex compound exhibiting differentiated oxide-rich and s...
The purpose of this study is to understand the processes underpinning the formation of dust in oxyge...
We investigate the impact of dust-induced gas fragmentation on the formation of the first low-mass, ...
To explain observations of abundant circumstellar dust and high stellar wind velocity, most models s...