Spatially resolved dusty torus toward the red supergiant WOH G64 in the Large Magellanic Cloud
arXiv:0803.3823 · doi:10.1051/0004-6361:200809469
Abstract
We present N-band spectro-interferometric observations of the red supergiant WOH G64 in the Large Magellanic Cloud (LMC) using MIDI at the Very Large Telescope Interferometer (VLTI). The location of WOH G64 on the H-R diagram based on the previously estimated luminosities is in serious disagreement with the current stellar evolution theory. The dust envelope around WOH G64 has been spatially resolved with a baseline of ~60 m--the first MIDI observations to resolve an individual stellar source in an extragalactic system. The observed N-band visibilities show a slight decrease from 8 to 10 micron and a gradual increase longward of 10 micron, reflecting the 10 micron silicate feature in self-absorption. The visibilities measured at four position angles differing by ~60 degrees but at approximately the same baseline length (~60 m) do not show a noticeable difference, suggesting that the object appears nearly centrosymmetric. The observed N-band visibilities and spectral energy distribution can be reproduced by an optically and geometrically thick silicate torus model viewed close to pole-on. The luminosity of the central star is derived to be 2.8 x 10^5 Lsun, which is by a factor of 2 lower than the previous estimates based on spherical models. The lower luminosity newly derived from our MIDI observations and two-dimensional modeling brings the location of WOH G64 on the H-R diagram in much better agreement with theoretical evolutionary tracks for a 25 Msun star. We also identify the H2O absorption features at 2.7 and 6 micron in the spectra obtained with the Infrared Space Observatory and the Spitzer Space Telescope. The 2.7 micron feature originates in the photosphere and/or the extended molecular layers, while the 6 micron feature is likely to be of circumstellar origin.
9 pages, 6 figures, accepted for publication in A&A
References in corpus (6)
- The Effective Temperatures and Physical Properties of Magellanic Cloud Red Supergiants: The Effects of Metallicity
- A Spitzer IRS Spectral Atlas of Luminous 8 micron Sources in the Large Magellanic Cloud
- 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
- A compact dusty disk around the Herbig Ae star HR 5999 resolved with VLTI / MIDI
- Temporal variations of the outer atmosphere and the dust shell of the carbon-rich Mira variable V Oph probed with VLTI/MIDI
Cited by in corpus (20)
- A new mass-loss rate prescription for red supergiants
- The wind speeds, dust content, and mass-loss rates of evolved AGB and RSG stars at varying metallicity
- Molecules and dust production in the Magellanic Clouds
- The `Red Supergiant Problem': the upper luminosity boundary of type-II supernova progenitors
- The evolution of Red Supergiants to supernova in the LMC cluster NGC 2100
- The Period-Luminosity Relation of Red Supergiant Stars in the Small Magellanic Cloud
- Evolved Massive Stars at Low-metallicity V. Mass-Loss Rate of Red Supergiant Stars in the Small Magellanic Cloud
- The Mass-Loss Return from Evolved Stars to the Large Magellanic Cloud II: Dust Properties for Oxygen-Rich Asymptotic Giant Branch Stars
- The Physical Properties of the Red Supergiant WOH G64: The Largest Star Known?
- The excess of cool supergiants from contemporary stellar evolution models defies the metallicity-independent Humphreys-Davidson limit
- Establishing a mass-loss rate relation for red supergiants in the Large Magellanic Cloud
- Asymmetric silicate dust distribution toward the silicate carbon star BM Gem
- Red Supergiant Mass Loss and Mass-Loss Rates
- The mass-loss rates of red supergiants at low metallicity: Detection of rotational CO emission from two red supergiants in the Large Magellanic Cloud
- Imaging the outward motions of clumpy dust clouds around the red supergiant Antares with VLT/VISIR
- Imaging the innermost circumstellar environment of the red supergiant WOH G64 in the Large Magellanic Cloud
- Investigating episodic mass loss in evolved massive stars: III. Spectroscopy of dusty massive stars in three northern galaxies
- Spatially resolved mid-infrared observations of the circumstellar environment of the born-again object FG Sge
- Red Supergiants in the Milky Way and Nearby Galaxies
- The extreme scarcity of dust-enshrouded red supergiants: consequences for producing stripped stars via winds