Numerical simulations of surface convection in a late M-dwarf
arXiv:astro-ph/0208584 · doi:10.1051/0004-6361:20021153
Abstract
Based on detailed 2D and 3D numerical radiation-hydrodynamics (RHD) simulations of time-dependent compressible convection, we have studied the dynamics and thermal structure of the convective surface layers of a prototypical late-type M-dwarf (Teff~2800K log(g)=5.0, solar chemical composition). The RHD models predict stellar granulation qualitatively similar to the familiar solar pattern. Quantitatively, the granular cells show a convective turn-over time scale of ~100s, and a horizontal scale of 80km; the relative intensity contrast of the granular pattern amounts to 1.1%, and root-mean-square vertical velocities reach 240m/s at maximum. Deviations from radiative equilibrium in the higher, formally convectively stable atmospheric layers are found to be insignificant allowing a reliable modeling of the atmosphere with 1D standard model atmospheres. A mixing-length parameter of alpha=2.1 provides the best representation of the average thermal structure of the RHD model atmosphere while alternative values are found when fitting the asymptotic entropy encountered in deeper layers of the stellar envelope alpha=1.5, or when matching the vertical velocity field alpha=3.5. The close correspondence between RHD and standard model atmospheres implies that presently existing discrepancies between observed and predicted stellar colors in the M-dwarf regime cannot be traced back to an inadequate treatment of convection in the 1D standard models. The RHD models predict a modest extension of the convectively mixed region beyond the formal Schwarzschild stability boundary which provides hints for the distribution of dust grains in cooler (brown dwarf) atmospheres.
19 pages, 16 figures, accepted for publication in A&A
References in corpus (3)
Cited by in corpus (62)
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- Simulations of stellar convection with CO5BOLD
- Numerical simulation of the three-dimensional structure and dynamics of the non-magnetic solar chromosphere
- The Effective Temperature Scale of M dwarfs
- A comparison of chemistry and dust cloud formation in ultracool dwarf model atmospheres
- Observing transiting planets with JWST -- Prime targets and their synthetic spectral observations
- 3D Hydrodynamical Simulations of Surface Convection in Red Giant Stars. Impact on spectral line formation and abundance analysis
- The low-level radial velocity variability in Barnard's star (=GJ 699). Secular acceleration, indications for convective redshift, and planet mass limits
- Dust in Brown Dwarfs and Extra-solar Planets I. Chemical composition and spectral appearance of quasi-static cloud layers
- A self-consistent cloud model for brown dwarfs and young giant exoplanets: comparison with photometric and spectroscopic observations
- Determination of stellar radii from asteroseismic Data
- The role of convection, overshoot, and gravity waves for the transport of dust in M dwarf and brown dwarf atmospheres
- Dust in brown dwarfs and extra-solar planets II. Cloud formation for cosmologically evolving abundances
- Atmospheres from very low-mass stars to extrasolar planets
- Atmospheres of Brown Dwarfs
- On the Limb Darkening, Spectral Energy Distribution, and Temperature Structure of Procyon
- Theoretical values of convective turnover times and Rossby numbers for solar-like, pre-main sequence stars
- Three-dimensional simulations of near-surface convection in main-sequence stars - I. Overall structure
- ANTARES -- A Numerical Tool for Astrophysical RESearch -- With applications to solar granulation
- Modelling the local and global cloud formation on HD 189733b
- Calibration of the Mixing-Length Theory for Convective White Dwarf Envelopes
- Granulation properties of giants, dwarfs, and white dwarfs from the CIFIST 3D model atmosphere grid
- The extremely red L dwarf ULAS J222711004547 - dominated by dust
- Possible Bright Starspots on TRAPPIST-1
- Dust in the Photospheric Environment II. Effect on the Near Infrared Spectra of L and T Dwarfs
- Energy transport, overshoot, and mixing in the atmospheres of M-type main- and pre-main-sequence objects
- Rotation periods for very low mass stars in the Pleiades
- A high resolution spectroscopic atlas of M subdwarfs - Effective temperature and metallicity
- Comparative Modelling of the Spectra of Cool Giants
- Pure-hydrogen 3D model atmospheres of cool white dwarfs
- Dust in Brown Dwarfs IV. Dust formation and driven turbulence on mesoscopic scales
- New constraints on the formation and settling of dust in the atmospheres of young M and L dwarfs
- Convective blueshift strengths of 810 F to M solar-type stars
- 3D hydrodynamical CO5BOLD model atmospheres of red giant stars: I. Atmospheric structure of a giant located near the RGB tip
- Models of solar surface dynamics: impact on eigenfrequencies and radius
- 3D simulations of M star atmosphere velocities and their influence on molecular FeH lines
- Dust in brown dwarfs and extra-solar planets. VII. Cloud formation in diffusive atmospheres
- Carbon Monoxide bands in M dwarfs
- The very low mass multiple system LHS\,1070 -- a testbed for model atmospheres for the lower end of the main sequence
- Non-gray rotating stellar models and the evolutionary history of the Orion Nebular Cluster
- An optical transmission spectrum of the transiting hot Jupiter in the metal-poor WASP-98 planetary system
- Spectral Resolution-linked Bias in Transit Spectroscopy of Extrasolar Planets
- Chemical Properties of the Local Galactic Disk and Halo. I. Fundamental Properties of 1,544 Nearby, High Proper-Motion M dwarfs and subdwarfs
- Three-dimensional magnetohydrodynamic simulations of M-dwarf chromospheres
- New light on the old problem of lithium pre--MS depletion: models with 2D RHD convection
- Convection Enhances Magnetic Turbulence in AM CVn Accretion Disks
- FIRST, a fibered aperture masking instrument II. Spectroscopy of the Capella binary system at the diffraction limit
- M-dwarf's Chromosphere, Corona and Wind Connection via the Nonlinear Alfvén Wave
- Self-consistent atmosphere modeling with cloud formation for low-mass stars and exoplanets
- Spectroscopic properties of a two-dimensional time-dependent Cepheid model I. Description and validation of the model
- Equilibria, Dynamics and Current Sheets Formation in Magnetically Confined Coronae
- Seismic constraints on open clusters
- Hunting for brown dwarf binaries and testing atmospheric models with X-Shooter
- Updated Pre-Main Sequence tracks at low metallicities for 0.1< M/Mo<1.5
- Nonlinear Alfvén Wave Model of Stellar Coronae and Winds from the Sun to M dwarfs
- The model for cloudy substellar atmospheres: A grid of self-consistent substellar atmosphere models with microphysical cloud formation
- The CARMENES search for exoplanets around M dwarfs. The impact of rotation and magnetic fields on the radial velocity jitter in cool stars
- 2MASSJ0516288+260738: Discovery of the first eclipsing late K + Brown dwarf system?
- A grid of self-consistent MSG (MARCS-StaticWeather-GGchem) cool stellar, sub-stellar, and exoplanetary model atmospheres
- Interpreting the atmospheric composition of exoplanets: sensitivity to planet formation assumptions
- Three-dimensional models of metal-poor stars
- Simulating the outer layers of rapidly rotating stars