© ESO 2018. Context. Low and intermediate mass stars are known to power strong stellar winds when evolving through the asymptotic giant branch (AGB) phase. Initial mass, luminosity, temperature, and composition determine the pulsation characteristics of the star and the dust species formed in the pulsating photospheric layers. Radiation pressure on these grains triggers the onset of a stellar wind. However, as of today, we still cannot predict the wind mass-loss rates and wind velocities from first principles neither do we know which species are the first to condense in the upper atmospheric regions. Aims. We aim to characterise the dominant physical, dynamical, and chemical processes in the inner wind region of two archetypical oxygen-ric...
Context. Aluminium monoxide (AlO) is likely efficiently depleted from the gas around oxygen-rich evo...
The project is embedded in a larger theoretical and observational effort at the IvS to study in deta...
This overview paper presents ATOMIUM, a Large Programme in Cycle 6 with the Atacama Large Millimeter...
Context. The condensation of inorganic dust grains in the winds of evolved stars is poorly understoo...
Context. The condensation of inorganic dust grains in the winds of evolved stars is poorly understoo...
Context. Low- and intermediate-mass stars go through a period of intense mass-loss at the end of the...
(abbreviated) We aim to constrain the dust formation histories in the winds of oxygen-rich AGB stars...
We present and analyse SO and SO2, recently observed with high angular resolution and sensitivity in...
Context. Low- and intermediate-mass stars go through a period of intense mass-loss at the end of the...
C 2019 The Author(s) We aim to determine the distributions of molecular SiS and CS in the circumstel...
Context. Low- and intermediate-mass stars go through a period of intense mass-loss at the end of the...
© 2018. The American Astronomical Society. Using the Atacama Large Millimeter/submillimeter Array (A...
International audienceThis overview paper presents ATOMIUM, a Large Programme in Cycle 6 with the At...
© ESO, 2017. Context. Aluminium monoxide (AlO) is likely efficiently depleted from the gas around ox...
Context. Our current insights into the circumstellar chemistry of asymptotic giant branch (AGB) star...
Context. Aluminium monoxide (AlO) is likely efficiently depleted from the gas around oxygen-rich evo...
The project is embedded in a larger theoretical and observational effort at the IvS to study in deta...
This overview paper presents ATOMIUM, a Large Programme in Cycle 6 with the Atacama Large Millimeter...
Context. The condensation of inorganic dust grains in the winds of evolved stars is poorly understoo...
Context. The condensation of inorganic dust grains in the winds of evolved stars is poorly understoo...
Context. Low- and intermediate-mass stars go through a period of intense mass-loss at the end of the...
(abbreviated) We aim to constrain the dust formation histories in the winds of oxygen-rich AGB stars...
We present and analyse SO and SO2, recently observed with high angular resolution and sensitivity in...
Context. Low- and intermediate-mass stars go through a period of intense mass-loss at the end of the...
C 2019 The Author(s) We aim to determine the distributions of molecular SiS and CS in the circumstel...
Context. Low- and intermediate-mass stars go through a period of intense mass-loss at the end of the...
© 2018. The American Astronomical Society. Using the Atacama Large Millimeter/submillimeter Array (A...
International audienceThis overview paper presents ATOMIUM, a Large Programme in Cycle 6 with the At...
© ESO, 2017. Context. Aluminium monoxide (AlO) is likely efficiently depleted from the gas around ox...
Context. Our current insights into the circumstellar chemistry of asymptotic giant branch (AGB) star...
Context. Aluminium monoxide (AlO) is likely efficiently depleted from the gas around oxygen-rich evo...
The project is embedded in a larger theoretical and observational effort at the IvS to study in deta...
This overview paper presents ATOMIUM, a Large Programme in Cycle 6 with the Atacama Large Millimeter...