ALMA and VLA reveal the lukewarm chromospheres of the nearby red supergiants Antares and Betelgeuse
arXiv:2006.08023 · doi:10.1051/0004-6361/202037756
Abstract
We first present spatially resolved ALMA and VLA continuum observations of the early-M red supergiant Antares to search for the presence of a chromosphere at radio wavelengths. We resolve the free-free emission of the Antares atmosphere at 11 unique wavelengths between 0.7 mm (ALMA band 8) and 10 cm (VLA S band). The projected angular diameter is found to continually increase with increasing wavelength, from a low of 50.7 mas at 0.7 mm up to a diameter of 431 mas at 10 cm, which corresponds to 1.35 and 11.6 times the photospheric angular diameter, respectively. All four ALMA measurements show that the shape of the atmosphere is elongated, with a flattening of 15% at a similar position angle. The disk-averaged gas temperature of the atmosphere initially rises from a value of 2700 K at 1.35 (i.e., 0.35 above the photosphere) to a peak value of 3800 K at 2.5 , after which it then more gradually decreases to 1650 K at 11.6 . The rise in gas temperature between 1.35 and 2.5 is evidence for a chromospheric temperature rise above the photosphere of a red supergiant. We detect a clear change in the spectral index across the sampled wavelength range, with the flux density between 0.7 mm and 1.4 cm, which we associate with chromosphere-dominated emission, while the flux density between 4.3 cm and 10 cm, which we associate with wind-dominated emission. We then perform nonlocal thermal equilibrium modeling of the far-ultraviolet radiation field of another early-M red supergiant, Betelgeuse, and find that an additional hot (i.e., K) chromospheric photoionization component with a much smaller filling factor must also exist throughout the chromospheres of these stars.
12 pages, 6 figures, accepted for publication in A&A
References in corpus (13)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- The impact of mass-loss on the evolution and pre-supernova properties of red supergiants
- The close circumstellar environment of Betelgeuse - II. Diffraction-limited spectro-imaging from 7.76 to 19.50 microns with VLT/VISIR
- An Updated 2017 Astrometric Solution for Betelgeuse
- Imaging the Radio Photospheres of Mira Variables
- Vigorous atmospheric motion in the red supergiant star Antares
- Properties of the CO and HO MOLsphere of the red supergiant Betelgeuse from VLTI/AMBER observations
- The molecular and dusty composition of Betelgeuse's inner circumstellar environment
- Resolving the extended stellar atmospheres of Asymptotic Giant Branch stars at (sub-)millimetre wavelengths
- Infrared Spectra and Visibilities as Probes of the Outer Atmospheres of Red Supergiant Stars
- The inhomogeneous sub-millimeter atmosphere of Betelgeuse
- The Antares emission nebula and mass loss of alpha Sco A
- A hydrodynamic study of the circumstellar envelope of alpha Scorpii
Cited by in corpus (10)
- The Photospheric Temperatures of Betelgeuse during the Great Dimming of 2019/2020: No New Dust Required
- Analytic, dust-independent mass-loss rates for red supergiant winds initiated by turbulent pressure
- The Great Dimming of Betelgeuse seen by the Himawari-8 meteorological satellite
- The inner circumstellar dust of the red supergiant Antares as seen with VLT/SPHERE/ZIMPOL
- The effect of winds on atmospheric layers of red supergiants I. Modelling for interferometric observations
- Spatially Resolved Observations of Betelgeuse at 7mm and 1.3cm Just Prior to the Great Dimming
- First images of Antares photosphere from spectropolarimetry
- Non-stoichiometric amorphous magnesium-iron silicates in circumstellar dust shells. Dust growth in outflows from supergiants
- Discovery of ionized circumstellar gas emission around the long-period Cepheid Carinae with ALMA
- The Nearby Evolved Stars Survey II: Constructing a volume-limited sample and first results from the James Clerk Maxwell Telescope