Global 3D radiation-hydrodynamical models of AGB stars with dust-driven winds
arXiv:2301.11836 · doi:10.1051/0004-6361/202244992
Abstract
Convection and mass loss by stellar winds are two dynamical processes that shape asymptotic giant branch (AGB) stars and their evolution. Observations and earlier 3D models indicate that giant convection cells cause high-contrast surface intensity patterns, and contribute to the origin of clumpy dust clouds. We study the formation and resulting properties of dust-driven winds from AGB stars, using new global 3D simulations. The dynamical stellar interiors, atmospheres, and wind acceleration zones of two M-type AGB stars were modeled with the CO5BOLD code. These first global 3D simulations are based on frequency-dependent gas opacities, and they feature time-dependent condensation and evaporation of silicate grains. Convection and pulsations emerge self-consistently, allowing us to derive wind properties (e.g., mass-loss rates and outflow velocities), without relying on parameterized descriptions of these processes. In contrast to 1D models with purely radial pulsations, the shocks induced by convection and pulsation in the 3D models cover large parts, but not the entirety, of the sphere, leading to a patchy, nonspherical structure of the atmosphere. Since dust condensation critically depends on gas density, new dust clouds form mostly in the dense wakes of atmospheric shocks, where the grains can grow efficiently. The resulting clumpy distribution of newly formed dust leads to a complex 3D morphology of the extended atmosphere and wind-acceleration zone, with simultaneous infall and outflow regions close to the star. Highly nonspherical isotherms and short-lived cool pockets of gas in the stellar vicinity are prominent features. Efficient dust formation sets in closer to the star than spherical averages of the temperature indicate, in dense regions where grain growth rates are higher than average.
References in corpus (16)
- 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
- 2D Models for Dust-driven AGB Star Winds
- The pulsation modes, masses and evolution of luminous red giants
- AGB Stars in the Fornax Dwarf Spheroidal Galaxy
- A new interpretation of the period-luminosity sequences of long-period variables
- Exploring wind-driving dust species in cool luminous giants III. Wind models for M-type AGB stars: dynamic and photometric properties
- The evolution of DARWIN: current status of wind models for AGB stars
- An extensive grid of DARWIN models for M-type AGB stars I. Mass-loss rates and other properties of dust-driven winds
- Clumpy dust clouds and extended atmosphere of the AGB star W Hya revealed with VLT/SPHERE-ZIMPOL and VLTI/AMBER II. Time variations between pre-maximum and minimum light
- Exploring the origin of clumpy dust clouds around cool giants. A global 3D RHD model of a dust-forming M-type AGB star
- The shock-heated atmosphere of an asymptotic giant branch star resolved by ALMA
- Modelling Long-Period Variables -- II. Fundamental mode pulsation in the nonlinear regime
- Properties of self-excited pulsations in 3D simulations of AGB stars and red supergiants
- Dynamic atmospheres and winds of cool luminous giants, II. Gradual Fe enrichment of wind-driving silicate grains
- ALMA observations of the vibrationally-excited rotational CO transition towards five AGB stars
Cited by in corpus (18)
- 3D simulations of AGB stellar winds -- II. Ray-tracer implementation and impact of radiation on the outflow morphology
- The most variable VVV sources: eruptive protostars, dipping giants in the Nuclear Disc and others
- One month convection timescale on the surface of a giant evolved star
- ATOMIUM: Continuum emission and evidence of dust enhancement from binary motion
- An impressionist view of V Hydrae. When MATISSE paints Asymmetric Giant Blobs
- Contemporaneous high-angular-resolution imaging of the AGB star W Hya in vibrationally excited H2O lines and visible polarized light with ALMA and VLT/SPHERE-ZIMPOL
- Unveiling VVV/WISE Mira variables on the far side of the Galactic disk: Distances, kinematics and a new extinction law
- Asymmetries in asymptotic giant branch stars and their winds. I. From 3D RHD models to synthetic observables
- Probing the Extended Atmospheres of AGB Stars: I. Synthetic imaging of 1D hydrodynamical models at radio and (sub-)millimeter wavelengths
- High-angular-resolution ALMA imaging of the inhomogeneous dynamical atmosphere of the asymptotic giant branch star W Hya
- Explosions of pulsating red supergiants: a natural pathway for the diversity of Type II-P/L supernovae
- Dynamic atmosphere and wind models of C-type asymptotic giant branch stars. Influences of dust optical data on mass loss and observables
- High-temperature dust formation in carbon-rich astrophysical environments
- Millimetre observations of the S-type AGB star Cygni: variability of the emission of the inner envelope
- Water vapour masers in long-period variable stars III. Mira variables U Her and RR Aql
- X TrA through the eyes of MATISSE: More evidence of clumpy molecular layers around C-type asymptotic giant branch stars
- Impact of a binary companion in AGB outflows on CO spectral lines
- VLTI-GRAVITY measurements of cool evolved stars: II. Pulsation properties and mass-loss process of the Mira star R Car and the red supergiant VX Sgr