The inner circumstellar dust of the red supergiant Antares as seen with VLT/SPHERE/ZIMPOL
arXiv:2101.02785 · doi:10.1093/mnras/stab018
Abstract
The processes by which red supergiants lose mass are not fully understood thus-far and their mass-loss rates lack theoretical constraints. The ambient surroundings of the nearby M0.5 Iab star Antares offers an ideal environment to obtain detailed empirical information on the outflow properties at its onset, and hence indirectly, on the mode(s) of mass loss. We present and analyse optical VLT/SPHERE/ZIMPOL polarimetric imaging with angular resolution down to 23 milli-arcsec, sufficient to spatially resolve both the stellar disk and its direct surroundings. We detect a conspicuous feature in polarised intensity that we identify as a clump containing dust, which we characterise through 3D radiative transfer modelling. The clump is positioned behind the plane of the sky, therefore has been released from the backside of the star, and its inner edge is only 0.3 stellar radii above the surface. The current dust mass in the clump is M, though its proximity to the star implies that dust nucleation is probably still ongoing. The ejection of clumps of gas and dust makes a non-negligible contribution to the total mass lost from the star which could possibly be linked to localised surface activity such as convective motions or non-radial pulsations.
15 pages, accepted for publication in MNRAS
References in corpus (21)
- The NumPy array: a structure for efficient numerical computation
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Contributions to the Nearby Stars (NStars) Project: Spectroscopy of Stars Earlier than M0 within 40 parsecs: The Southern Sample
- New Grids of ATLAS9 Model Atmospheres
- Radiative transfer in very optically thick circumstellar disks
- Variability in red supergiant stars: pulsations, long secondary periods and convection noise
- The dust condensation sequence in red super-giant stars
- Atmospheric dynamics and the mass loss process in red supergiant stars
- The evolution of Red Supergiants to supernova in the LMC cluster NGC 2100
- The close circumstellar environment of Betelgeuse - II. Diffraction-limited spectro-imaging from 7.76 to 19.50 microns with VLT/VISIR
- Vigorous atmospheric motion in the red supergiant star Antares
- Exploring the origin of clumpy dust clouds around cool giants. A global 3D RHD model of a dust-forming M-type AGB star
- NOEMA maps the CO environment of the red supergiant Cep
- The Antares emission nebula and mass loss of alpha Sco A
- On massive dust clumps in the envelope of the red supergiant VY Canis Majoris
- ALMA and VLA reveal the lukewarm chromospheres of the nearby red supergiants Antares and Betelgeuse
- Imaging the outward motions of clumpy dust clouds around the red supergiant Antares with VLT/VISIR
- A hydrodynamic study of the circumstellar envelope of alpha Scorpii
- Modelling polarized light from dust shells surrounding asymptotic giant branch stars
- Chromospheres and Winds of Red Supergiants: An Empirical Look at Outer Atmospheric Structure
- 3D hydrodynamical simulations of evolved stars and observations of stellar surfaces
Cited by in corpus (7)
- Evolution and Mass Loss of Cool Ageing Stars: a Daedalean Story
- Evolved Massive Stars at Low-metallicity V. Mass-Loss Rate of Red Supergiant Stars in the Small Magellanic Cloud
- 3D MHD astrospheres: applications to IRC-10414 and Betelgeuse
- The Great Dimming of Betelgeuse seen by the Himawari-8 meteorological satellite
- The VLT/SPHERE view of the ATOMIUM cool evolved star sample. I. Overview: Sample characterization through polarization analysis
- The dusty circumstellar environment of Betelgeuse during the Great Dimming as seen by VLTI/MATISSE
- Modeling extinction and reddening effects by circumstellar dust in the Betelgeuse envelope in the presence of radiative torque disruption