Mid-IR Imaging of AGB Stars and Circumstellar Modelling
M. Busso, L. Origlia, G. Silvestro, M. Marengo, P. Persi, M. Ferrari-Toniolo
Abstract
Open-access reader
M. Busso, L. Origlia, G. Silvestro, M. Marengo, P. Persi, M. Ferrari-Toniolo
Abstract
Open-access reader
The evolution of low and intermediate mass (1-8 M⊙) stars along the Asymptotic Giant Branch (AGB) is ruled by processes of mass loss, causing the whole convective envelope to be gradually ejected into space. If the stellar mass is sufficiently high (M ≥ 1.5 M⊙) the envelope itself becomes enriched in nucleosynthesis products (carbon and s-process nuclei) and the star evolves into a C-rich phase. AGB stars are hence surrounded by O-rich or C-rich envelopes, opaque at optical wavelengths, which are best studied through direct imaging in the infrared (IR).
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The evolution of low and intermediate mass (1-8 M⊙) stars along the Asymptotic Giant Branch (AGB) is ruled by processes of mass loss, causing the whole convective envelope to be gradually ejected into space. If the stellar mass is sufficiently high (M ≥ 1.5 M⊙) the envelope itself becomes enriched in nucleosynthesis products (carbon and s-process nuclei) and the star evolves into a C-rich phase. AGB stars are hence surrounded by O-rich or C-rich envelopes, opaque at optical wavelengths, which are best studied through direct imaging in the infrared (IR).
Key concepts: Asymptotic giant branch, Circumstellar envelope, Physics, Stars, Astrophysics, Carbon star, Opacity, Nucleosynthesis