New insights into the dust formation of oxygen-rich AGB stars
arXiv:1310.1924 · doi:10.1051/0004-6361/201322376
Abstract
We observed the AGB stars S Ori, GX Mon and R Cnc with the MIDI instrument at the VLTI. We compared the data to radiative transfer models of the dust shells, where the central stellar intensity profiles were described by dust-free dynamic model atmospheres. We used Al2O3 and warm silicate grains. Our S Ori and R Cnc data could be well described by an Al2O3 dust shell alone, and our GX Mon data by a mix of an Al2O3 and a silicate shell. The best-fit parameters for S Ori and R Cnc included photospheric angular diameters Theta(Phot) of 9.7+/-1.0mas and 12.3+/-1.0mas, optical depths tau(V)(Al2O3) of 1.5+/-0.5 and 1.35+/-0.2, and inner radii R(in) of 1.9+/-0.3R(Phot) and 2.2+/-0.3R(Phot), respectively. Best-fit parameters for GX Mon were Theta(Phot)=8.7+/-1.3mas, tau(V)(Al2O3)=1.9+/-0.6, R(in)(Al2O3)=2.1+/-0.3R(Phot), tau(V)(silicate)=3.2+/-0.5, and R(in)(silicate)=4.6+/-0.2R(Phot). Our model fits constrain the chemical composition and the inner boundary radii of the dust shells, as well as the photospheric angular diameters. Our interferometric results are consistent with Al2O3 grains condensing close to the stellar surface at about 2 stellar radii, co-located with the extended atmosphere and SiO maser emission, and warm silicate grains at larger distances of about 4--5 stellar radii. We verified that the number densities of aluminum can match that of the best-fit Al2O3 dust shell near the inner dust radius in sufficiently extended atmospheres, confirming that Al2O3 grains can be seed particles for the further dust condensation. Together with literature data of the mass-loss rates, our sample is consistent with a hypothesis that stars with low mass-loss rates form primarily dust that preserves the spectral properties of Al2O3, and stars with higher mass-loss rate form dust with properties of warm silicates.
20 pages, 10 figures
References in corpus (13)
- Too little radiation pressure on dust in the winds of oxygen-rich AGB stars
- A close halo of large transparent grains around extreme red giant stars
- An Improved Model of SiO Maser Emission in Miras
- Optical constants of refractory oxides at high temperatures
- The Mira variable S Ori: Relationships between the photosphere, molecular layer, dust shell, and SiO maser shell at 4 epochs
- Exploring wind-driving dust species in cool luminous giants I. Basic criteria and dynamical models of M-type AGB stars
- Winds of M- and S-type AGB stars: an unorthodox suggestion for the driving mechanism
- Dynamical Opacity-Sampling Models of Mira Variables. I: Modelling Description and Analysis of Approximations
- Inhomogeneities in molecular layers of Mira atmospheres
- ISO Mid-Infrared Spectroscopy of Galactic Bulge AGB Stars
- The wind of the M-type AGB star RT Virginis probed by VLTI/MIDI
- Temporal variations of the outer atmosphere and the dust shell of the carbon-rich Mira variable V Oph probed with VLTI/MIDI
- Asymmetric silicate dust distribution toward the silicate carbon star BM Gem
Cited by in corpus (48)
- Dust formation in the oxygen-rich AGB star IK Tau
- Dust from AGBs: relevant factors and modelling uncertainties
- Dynamic atmospheres and winds of cool luminous giants, I. AlO and silicate dust in the close vicinity of M-type AGB stars
- Tracing the phase transition of Al-bearing species from molecules to dust in AGB winds. Constraining the presence of gas-phase (Al2O3)n clusters
- What causes the large extensions of red-supergiant atmospheres? Comparisons of interferometric observations with 1-D hydrostatic, 3-D convection, and 1-D pulsating model atmospheres
- Clumpy dust clouds and extended atmosphere of the AGB star W Hya revealed with VLT/SPHERE-ZIMPOL and VLTI/AMBER
- An observational study of dust nucleation in Mira ( Ceti): I. Variable features of AlO and other Al-bearing species
- Evolution and Mass Loss of Cool Ageing Stars: a Daedalean Story
- Resolving the extended atmosphere and the inner wind of Mira ( Ceti) with long ALMA baselines
- Constraints on the Initial-Final Mass Relation from Wide Double White Dwarfs
- Bottom-up dust nucleation theory in oxygen-rich evolved stars I. Aluminium oxide clusters
- Exploring the origin of clumpy dust clouds around cool giants. A global 3D RHD model of a dust-forming M-type AGB star
- High-resolution observations of gas and dust around Mira using ALMA and SPHERE/ZIMPOL
- On the alumina dust production in the winds of O-rich Asymptotic Giant Branch stars
- An observational study of dust nucleation in Mira ( Ceti): II. Titanium oxides are negligible for nucleation at high temperatures
- Near-infrared spectro-interferometry of Mira variables and comparisons to 1D dynamic model atmospheres and 3D convection simulations
- Search for aluminium monoxide in the winds of oxygen-rich AGB stars
- Dust-driven winds of AGB stars: The critical interplay of atmospheric shocks and luminosity variations
- Inner dusty envelope of the AGB stars W~Hydrae, SW\,Virginis, and R~Crateris using SPHERE/ZIMPOL
- Silicate condensation in Mira variables
- The VLTI/MIDI view on the inner mass loss of evolved stars from the Herschel MESS sample
- Atmospheres and wind properties of non-spherical AGB stars
- Dynamic atmospheres and winds of cool luminous giants, II. Gradual Fe enrichment of wind-driving silicate grains
- Rotational spectra of vibrationally excited AlO and TiO in oxygen rich stars
- Interplay between pulsation, mass loss, and third dredge-up: More about Miras with and without technetium
- Exploring the innermost dust formation region of the oxygen-rich AGB star IK~Tau with VLT/SPHERE-ZIMPOL and VLTI/AMBER
- A global optimisation study of the low-lying isomers of the alumina octomer (AlO)
- VLTI/AMBER spectro-interferometry of the late-type supergiants V766 Cen (=HR 5171 A), sigma Oph, BM Sco, and HD 206859
- Pulsation-induced atmospheric dynamics in M-type AGB stars. Effects on wind properties, photometric variations and near-IR CO line profiles
- Connecting the evolution of thermally pulsing asymptotic giant branch stars to the chemistry in their circumstellar envelopes -- I. The case of hydrogen cyanide
- The curious case of II Lup: a complex morphology revealed with SAM/NACO and ALMA
- Morpho-kinematics of the circumstellar envelope of the AGB star R Dor: a global view
- VLTI/AMBER observations of cold giant stars: atmospheric structures and fundamental parameters
- Optical properties of non-stoichiometric amorphous silicates with application to circumstellar dust extinction
- Modelling polarized light from dust shells surrounding asymptotic giant branch stars
- A Reexamination of Phosphorus and Chlorine Depletions in the Diffuse Interstellar Medium
- Tomography of silicate dust around M-type AGB stars I. Diagnostics based on dynamical models
- Today a Duo, But Once a Trio? The Double White Dwarf HS 22202146 May Be A Post-Blue Straggler Binary
- Dissecting the central regions of OH 231.8 + 4.2 with ALMA: a salty rotating disk at the base of a young bipolar outflow
- The effect of thermal non-equilibrium on kinetic nucleation
- Eppur si eclissa: Eccentric low-mass companions and time-in-dust selection explain long secondary periods
- Interferometric observations of SiO thermal emission in the inner wind of M-type AGB stars IK Tauri and IRC+10011
- Multi-line study of the radial extent of SiO, CS, and SiS in AGB envelopes
- The rotational disruption of porous dust aggregates from ab-initio kinematic calculations
- On the optical properties of Resonant Drag Instabilities: Variability of Asymptotic Giant Branch and R Coronae Borealis stars
- From the atmosphere to the circumstellar environment in cool evolved stars
- The Infrared Evolution of Dust in V838 Monocerotis
- Non-stoichiometric amorphous magnesium-iron silicates in circumstellar dust shells. Dust growth in outflows from supergiants