ATOMIUM: ALMA tracing the origins of molecules in dust forming oxygen rich M-type stars: Motivation, sample, calibration, and initial results
C. A. Gottlieb, L. Decin, A. M. S. Richards, F. De Ceuster, W. Homan,, S. H. J. Wallstrom, T. Danilovich, T. J. Millar, M. Montarges, K. T. Wong, I., McDonald, A. Baudry, J. Bolte, E. Cannon, E. De Beck, A. de Koter, I. El, Mellah, S. Etoka, D. Gobrecht, M. Gray, F. Herpin

TL;DR
ATOMIUM is an ALMA Large Programme that investigates the gas and dust formation in the winds of evolved oxygen-rich stars, revealing complex wind kinematics and chemical processes that challenge simple spherical wind models.
Contribution
This study provides the first homogeneous ALMA survey of oxygen-rich AGB and RSG stars, offering detailed insights into their wind dynamics and molecular chemistry.
Findings
Many stars exhibit slow wind acceleration and higher-than-expected outflow velocities.
Molecular transitions other than CO often reach higher velocities, indicating complex wind structures.
Binary interactions may influence the non-monotonic velocity profiles.
Abstract
This overview paper presents ATOMIUM, a Large Programme in Cycle 6 with the Atacama Large Millimeter-submillimeter Array (ALMA). The goal of ATOMIUM is to understand the dynamics and the gas phase and dust formation chemistry in the winds of evolved asymptotic giant branch (AGB) and red supergiant (RSG) stars. A more general aim is to identify chemical processes applicable to other astrophysical environments. 17 oxygen-rich AGB and RSG stars spanning a range in (circum)stellar parameters and evolutionary phases were observed in a homogeneous observing strategy allowing for an unambiguous comparison. Data were obtained between 213.83 and 269.71 GHz at high (0.025-0.050 arcsec), medium (0.13-0.24 arcsec), and low (about 1 arcsec) angular resolution. The sensitivity per 1.3 km/s channel was 1.5-5 mJy/beam. 13 molecules were designated as primary molecules in the survey: CO, SiO, AlO, AlOH,…
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