History of two mass loss processes in VY CMa. Fast outflows carving older ejecta
G. Quintana-Lacaci, L. Velilla-Prieto, M. Ag\'undez, J.P. Fonfr\'ia,, J. Cernicharo, L. Decin, A. Castro-Carrizo

TL;DR
This study uses high-resolution ALMA observations to analyze the complex mass ejection processes in the red supergiant VY CMa, revealing two distinct outflow mechanisms shaping its circumstellar environment.
Contribution
The paper provides the first detailed 3D reconstruction of VY CMa's ejecta, identifying two different mass loss processes and proposing their physical origins.
Findings
Identification of two types of ejecta: extended irregular structures and localized fast outflows.
3D reconstruction of outflows showing their flat morphology and carving effect.
Evidence supporting two distinct mass loss mechanisms in VY CMa.
Abstract
Red supergiant stars (RSGs, Minit = 10-40Msun) are known to eject large amounts of material, as much as half of their initial mass during this evolutionary phase. However, the processes powering the mass ejection in low- and intermediate-mass stars do not work for RSGs and the mechanism that drives the ejection remains unknown. Different mechanisms have been proposed as responsible for this mass ejection but so far little is known about the actual processes taking place in these objects. Here we present high angular resolution interferometric ALMA maps of VY CMa continuum and molecular emission, which resolve the structure of the ejecta with unprecedented detail. The study of the molecular emission from the ejecta around evolved stars has been shown to be an essential tool in determining the characteristics of the mass loss ejections. Our aim is thus to use the information provided by…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astrophysics and Star Formation Studies · Astronomy and Astrophysical Research
