The non-uniform, dynamic atmosphere of Betelgeuse observed at mid-infrared wavelengths
arXiv:1105.3273 · doi:10.1088/0004-637X/740/1/24
Abstract
We present an interferometric study of the continuum surface of the red supergiant star Betelgeuse at 11.15 microns wavelength, using data obtained with the Berkeley Infrared Spatial Interferometer each year between 2006 and 2010. These data allow an investigation of an optically thick layer within 1.4 stellar radii of the photosphere. The layer has an optical depth of ~1 at 11.15 microns, and varies in temperature between 1900 K and 2800 K and in outer radius between 1.16 and 1.36 stellar radii. Electron-hydrogen atom collisions contribute significantly to the opacity of the layer. The layer has a non-uniform intensity distribution that changes between observing epochs. These results indicate that large-scale surface convective activity strongly influences the dynamics of the inner atmosphere of Betelgeuse, and mass-loss processes.
13 pages, 5 figures, in press (ApJ)
References in corpus (10)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Probing the mass-loss history of AGB and red supergiant stars from CO rotational line profiles - II. CO line survey of evolved stars: derivation of mass-loss rate formulae
- 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
- Imaging the dynamical atmosphere of the red supergiant Betelgeuse in the CO first overtone lines with VLTI/AMBER
- 2D Models for Dust-driven AGB Star Winds
- The close circumstellar environment of Betelgeuse - II. Diffraction-limited spectro-imaging from 7.76 to 19.50 microns with VLT/VISIR
- The molecular and dusty composition of Betelgeuse's inner circumstellar environment
- Infrared Spectra and Visibilities as Probes of the Outer Atmospheres of Red Supergiant Stars
Cited by in corpus (9)
- The close circumstellar environment of Betelgeuse - V. Rotation velocity and molecular envelope properties from ALMA
- The close circumstellar environment of Betelgeuse. IV. VLTI/PIONIER interferometric monitoring of the photosphere
- The inner dust shell of Betelgeuse detected by polarimetric aperture-masking interferometry
- The mass loss process in dwarf galaxies from 3D hydrodynamical simulations: the role of dark matter and starbursts
- Formation of emission line dots and extremely metal-deficient dwarfs from almost dark galaxies
- One month convection timescale on the surface of a giant evolved star
- On the theory of mass loss in dwarf galaxies: I - basic equations and the case of wave/thermal driven winds
- Time Variable Broad Line Emission in NGC 4203: Evidence for Stellar Contrails
- MOLsphere and pulsations of the Galactic Center's red supergiant GCIRS 7 from VLTI/GRAVITY