Three-dimensional simulations of near-surface convection in main-sequence stars - I. Overall structure
arXiv:1308.4874 · doi:10.1051/0004-6361/201321343
Abstract
The near-surface layers of cool main-sequence stars are structured by convective flows, which are overshooting into the atmosphere. The flows and the associated spatio-temporal variations of density and temperature affect spectral line profiles and thus have an impact on estimates of stellar properties such as effective temperature, gravitational acceleration, and abundances. We aim at identifying distinctive properties of the thermodynamic structure of the atmospheres of different stars and understand their causes. We ran comprehensive 3D radiation hydrodynamics simulations of the near-surface layers of six simulated stars of spectral type F3V to M2V with the MURaM code. We carry out a systematic parameter study of the mean stratifications, flow structures, and the energy flux in these stars.\par Results: We find monotonic trends along the lower main sequence in granule size, flow velocity, and intensity contrast. The convection in the M-star models differs substantially from that of the hotter stars, mainly owing to the more gradual transition from convective to radiative energy transport. While the basic mechanisms driving surface convection in cool stars are the same, the properties of the convection vary along the main sequence. Apart from monotonic trends in rms velocity, intensity contrast, granule size, etc., there is a transition between "naked" and "hidden" granulation around spectral type K5V caused by the (highly non-linear) temperature dependence of the opacity. These variations have to be taken into account when stellar parameters are derived from spectra.
14 pages, 1 appendix, 15+2 figures, 2 tables; accepted for publication in A&A
References in corpus (7)
- 3D Hydrodynamical Simulations of Surface Convection in Red Giant Stars. Impact on spectral line formation and abundance analysis
- A Grid of 3D Stellar Atmosphere Models of Solar Metallicity: I. General Properties, Granulation and Atmospheric Expansion
- How realistic are solar model atmospheres?
- The origin of the reversed granulation in the solar photosphere
- Three-dimensional simulations of near-surface convection in main-sequence stars - I. Overall structure
- Energy transport, overshoot, and mixing in the atmospheres of M-type main- and pre-main-sequence objects
- Three-dimensional magnetohydrodynamic simulations of M-dwarf chromospheres
Cited by in corpus (48)
- The chemical make-up of the Sun: A 2020 vision
- Synthetic Stellar Photometry - I. General considerations and new transformations for broad-band systems
- A new correction of stellar oscillation frequencies for near-surface effects
- Global 3D radiation-hydrodynamics models of AGB stars. Effects of convection and radial pulsations on atmospheric structures
- Measuring precise radial velocities on individual spectral lines : II. Dependance of stellar activity signal on line depth
- Solar Irradiance Variability is Caused by the Magnetic Activity on the Solar Surface
- On The Evolution of Magnetic White Dwarfs
- Three-dimensional simulations of near-surface convection in main-sequence stars - I. Overall structure
- Three-dimensional simulations of near-surface convection in main-sequence stars - II. Properties of granulation and spectral lines
- Radial Velocity Fitting Challenge. I. Simulating the data set including realistic stellar radial-velocity signals
- Three-dimensional simulations of near-surface convection in main-sequence stars. III. The structure of small-scale magnetic flux concentrations
- Stellar Surface Magneto-Convection as a Source of Astrophysical Noise II. Center-to-Limb Parameterisation of Absorption Line Profiles and Comparison to Observations
- MESA meets MURaM: Surface effects in main-sequence solar-like oscillators computed using three-dimensional radiation hydrodynamics simulations
- Chromospheric Extension of the MURaM Code
- Convective blueshift strengths of 810 F to M solar-type stars
- The CARMENES search for exoplanets around M dwarfs: Convective shift and starspot constraints from chromatic radial velocities
- Spectral variability of photospheric radiation due to faculae I: The Sun and Sun-like stars
- 3D Radiative MHD simulations of starspots
- The Impact of Stellar Surface Magnetoconvection and Oscillations on the Detection of Temperate, Earth-Mass Planets Around Sun-Like Stars
- Characterisation of stellar activity of M dwarfs. I. Long-timescale variability in a large sample and detection of new cycles
- Activity time series of old stars from late F to early K. I. Simulating radial velocity, astrometry, photometry, and chromospheric emission
- Three-dimensional simulations of near-surface convection in main-sequence stars. IV. Effect of small-scale magnetic flux concentrations on centre-to-limb variation and spectral lines
- - A tool for multiband light curve modeling of planetary transits and stellar spots
- Planet and star synergy at high spectral resolution. A rationale for the characterisation of exoplanet atmospheres. I. The Infrared
- Small-scale Dynamo in Cool Stars: I. Changes in stratification and near-surface convection for main-sequence spectral types
- Spectral variability of photospheric radiation due to faculae II: Facular contrasts for cool main-sequence stars
- The crucial role of surface magnetic fields for stellar dynamos: Epsilon Eridani, 61 Cygni A, and the Sun
- The effects of granulation and supergranulation on Earth-mass planet detectability in the habitable zone around F6-K4 stars
- Long-term stellar activity variations and their effect on radial-velocity measurements
- Forward modelling of Kepler-band variability due to faculae and spots
- The Stellar Variability Noise Floor for Transiting Exoplanet Photometry with PLATO
- Theoretical oscillation frequencies for solar-type dwarfs from stellar models with -atmospheres
- Surface correction of main sequence solar-like oscillators with the LEGACY sample
- Small-scale dynamo in cool main sequence stars. II. The effect of metallicity
- Testing MURaM and MPS-ATLAS against the quiet solar spectrum
- Spatially resolved spectroscopy across stellar surfaces. IV. F, G, & K-stars: Synthetic 3D spectra at hyper-high resolution
- Equilibria, Dynamics and Current Sheets Formation in Magnetically Confined Coronae
- Sun-like stars unlike the Sun: Clues for chemical anomalies of cool stars
- Variability of Kepler Solar-Like Stars Harboring Small Exoplanets
- Estimating the nonstructural component of the helioseismic surface term using hydrodynamic simulations
- Opacity for realistic 3D MHD simulations of cool stellar atmospheres
- Predicting convective blueshift and radial-velocity dispersion due to granulation for FGK stars
- Small-scale Dynamo in Cool Stars III. Changes in the photospheres of F3V to M0V stars
- On the visibility of stellar oscillations
- Exploring the small-scale magnetic fields of the solar analog KIC 8006161 using asteroseismology
- Simulations of facular magnetic fields on cool stars I: Main sequence stars with solar metallicity
- 3D Radiative MHD Simulations of Starspots II: Large-scale Structure
- Asteroseismic Analysis of a Red Giant KIC 9145955 by Including the Small-scale Magnetic Fields in the Atmosphere