Inhomogeneous molecular ring around the B[e] supergiant LHA 120-S 73
arXiv:1607.00152 · doi:10.1051/0004-6361/201628493
Abstract
We aim to improve our knowledge on the structure and dynamics of the circumstellar disk of the LMC B[e] supergiant LHA 120-S 73. High-resolution optical and near-IR spectroscopic data were obtained over a period of 16 and 7 years, respectively. The spectra cover the diagnostic emission lines from [CaII] and [OI], as well as the CO bands. These features trace the disk at different distances from the star. We analyzed the kinematics of the individual emission regions by modeling their emission profiles. A low-resolution mid-infrared spectrum was obtained as well, which provides information on the composition of the dusty disk. All diagnostic emission features display double-peaked line profiles, which we interpret as due to Keplerian rotation. We find that LHA 120-S 73 is surrounded by at least four individual rings of material with alternating densities (or by a disk with strongly non-monotonic radial density distribution). Moreover, we find that the molecular ring must have gaps or at least strong density inhomogeneities, or in other words, a clumpy structure. The mid-infrared spectrum displays features of oxygen- and carbon-rich grain species, which indicates a long-lived, stable dusty disk. We cannot confirm the previously reported high value for the stellar rotation velocity. The line profile of HeI 5876 A is strongly variable in both width and shape and resembles of those seen in non-radially pulsating stars. A proper determination of the real underlying stellar rotation velocity is hence not possible. The existence of multiple stable and clumpy rings of alternating density recalls ring structures around planets. Although there is currently insufficient observational evidence, it is tempting to propose a scenario with one (or more) minor bodies or planets revolving around LHA 120-S 73 and stabilizing the ring system, in analogy to the shepherd moons in planetary systems.
14 pages, 13 figure, accepted for pulication in A&A
References in corpus (11)
- Spitzer SAGE Infrared Photometry of Massive Stars in the Large Magellanic Cloud
- Spitzer SAGE-SMC Infrared Photometry of Massive Stars in the Small Magellanic Cloud
- A Spitzer IRS Spectral Atlas of Luminous 8 micron Sources in the Large Magellanic Cloud
- The pre- versus post-main sequence evolutionary phase of B[e] stars: Constraints from 13CO band emission
- Neutral material around the B[e] supergiant star LHA 115-S 65: An outflowing disk or a detached Keplerian rotating disk?
- Molecular emission from GG Car's circumbinary disk
- On the evolutionary stage of the unclassified B[e] star CD-42o11721
- A K-band spectral mini-survey of Galactic B[e] stars
- Dusty Blue Supergiants: News from High-Angular Resolution Observations
- Evidence of the Evolved Nature of the B[e] Star MWC 137
- Discovery of SiO band emission from Galactic B[e] supergiants
Cited by in corpus (14)
- Evidence of an evolved nature of MWC 349A
- The study of unclassified B[e] stars and candidates in the Galaxy and Magellanic Clouds
- Dust evolution in the circumstellar disc of the unclassified B[e] star HD 50138
- Resolving the circumstellar environment of the Galactic B[e] supergiant star MWC 137. II. Nebular kinematics and stellar variability
- Intriguing detection of CO molecular emission in a classical Be star
- Dense Molecular Environments of B[e] Supergiants and Yellow Hypergiants
- GG Carinae: orbital parameters and accretion indicators from phase-resolved spectroscopy and photometry
- Discovering new B[e] supergiants and candidate Luminous Blue Variables in nearby galaxies
- Follow-Up of Extended Shells around B[e] Stars
- Accretion in the Binary System GG Carinae and Implications for B[e] Supergiants
- GG Carinae: Discovery of orbital phase dependent 1.583-day periodicities in the B[e] supergiant binary
- The circumbinary rings of GG Carinae: indications of disc eccentricity growth in the B[e] supergiant's atomic emission lines
- New constraints on the binary system HD 327083 and its gaseous and dusty environments
- A Census of B[e] Supergiants