Context. The stellar outflows of low- to intermediate-mass stars are characterised by a rich chemistry. Condensation of molecular gas species into dust grains is a key component in a chain of physical processes that leads to the onset of a stellar wind. In order to improve our understanding of the coupling between the micro-scale chemistry and macro-scale dynamics, we need to retrieve the abundance of molecules throughout the outflow. Aims. Our aim is to determine the radial abundance profile of SiO and HCN throughout the stellar outflow of R Dor, an oxygen-rich AGB star with a low mass-loss rate. SiO is thought to play an essential role in the dust-formation process of oxygen-rich AGB stars. The presence of HCN in an oxygen-rich e...
Context. Theoretical models suggest that massive stars form via disk-mediated accretion in...
19 pags., 11 figs., 8 tabs.Aims. We aim to determine the abundances of CS, SiO, and SiS in a large s...
During the late phases of low-intermediate mass (0.1 to 8 solar masses) stars, a significant mass lo...
Context. The stellar outflows of low- to intermediate-mass stars are characterised by a rich chemist...
(abridged) Our aim is to determine the radial abundance profile of SiO and HCN throughout the stella...
R Dor is an oxygen-rich AGB star characterised by a low mass-loss rate. Using retrieval methods, we ...
Using both dynamical and chemical modelling, we derive an accurate abundance profile for the molecul...
The Asymptotic Giant Branch (AGB) phase is one of the final evolutionary phases of low- to intermedi...
Context. Our current insights into the circumstellar chemistry of asymptotic giant branch (AGB) star...
Context.Asymptotic Giant Branch (AGB) stars are typified by strong dust-driven, molecular outflows....
Context. The interstellar medium is enriched primarily by matter ejected from evolved low and interm...
Aims. We aim to determine the abundances of SiO, CS, SiS, SO, and SO2 in a large sample of oxygen-ri...
Context. The evolution of low- and intermediate-mass stars on the asymptotic giant branch (AGB) is m...
Context. Our current insights into the circumstellar chemistry of asymptotic giant branch (AGB) star...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
Context. Theoretical models suggest that massive stars form via disk-mediated accretion in...
19 pags., 11 figs., 8 tabs.Aims. We aim to determine the abundances of CS, SiO, and SiS in a large s...
During the late phases of low-intermediate mass (0.1 to 8 solar masses) stars, a significant mass lo...
Context. The stellar outflows of low- to intermediate-mass stars are characterised by a rich chemist...
(abridged) Our aim is to determine the radial abundance profile of SiO and HCN throughout the stella...
R Dor is an oxygen-rich AGB star characterised by a low mass-loss rate. Using retrieval methods, we ...
Using both dynamical and chemical modelling, we derive an accurate abundance profile for the molecul...
The Asymptotic Giant Branch (AGB) phase is one of the final evolutionary phases of low- to intermedi...
Context. Our current insights into the circumstellar chemistry of asymptotic giant branch (AGB) star...
Context.Asymptotic Giant Branch (AGB) stars are typified by strong dust-driven, molecular outflows....
Context. The interstellar medium is enriched primarily by matter ejected from evolved low and interm...
Aims. We aim to determine the abundances of SiO, CS, SiS, SO, and SO2 in a large sample of oxygen-ri...
Context. The evolution of low- and intermediate-mass stars on the asymptotic giant branch (AGB) is m...
Context. Our current insights into the circumstellar chemistry of asymptotic giant branch (AGB) star...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
Context. Theoretical models suggest that massive stars form via disk-mediated accretion in...
19 pags., 11 figs., 8 tabs.Aims. We aim to determine the abundances of CS, SiO, and SiS in a large s...
During the late phases of low-intermediate mass (0.1 to 8 solar masses) stars, a significant mass lo...