Improvements to stellar structure models, based on a grid of 3D convection simulations. II. Calibrating the mixing-length formulation
arXiv:1410.1559 · doi:10.1093/mnras/stu2084
Abstract
We perform a calibration of the mixing length of convection in stellar structure models against realistic 3D radiation-coupled hydrodynamics (RHD) simulations of convection in stellar surface layers, determining the adiabat deep in convective stellar envelopes. The mixing-length parameter is calibrated by matching averages of the 3D simulations to 1D stellar envelope models, ensuring identical atomic physics in the two cases. This is done for a previously published grid of solar-metallicity convection simulations, covering from 4200 K to 6900 K on the main sequence, and 4300-5000 K for giants with logg=2.2. Our calibration results in an varying from 1.6 for the warmest dwarf, which is just cool enough to admit a convective envelope, and up to 2.05 for the coolest dwarfs in our grid. In between these is a triangular plateau of ~ 1.76. The Sun is located on this plateau and has seen little change during its evolution so far. When stars ascend the giant branch, they largely do so along tracks of constant , with decreasing with increasing mass.
22 pages, 15 figures, accepted for publication in MNRAS
References in corpus (13)
- Modules for Experiments in Stellar Astrophysics (MESA)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Correcting stellar oscillation frequencies for near-surface effects
- ASTEC -- the Aarhus STellar Evolution Code
- 3D Hydrodynamical Simulations of Surface Convection in Red Giant Stars. Impact on spectral line formation and abundance analysis
- Excitation of solar-like oscillations across the HR diagram
- A Stellar Model-fitting Pipeline for Asteroseismic Data from the Kepler Mission
- Improvements to Stellar Structure Models, Based on a Grid of 3D Convection Simulations. I. -Relations
- Models of alpha Centauri A and B with and without seismic constraints: time dependence of the mixing-length parameter
- A closure model with plumes I. The solar convection
- Modelling the components of binaries in Hyades: The dependence of the mixing-length parameter on stellar mass
- The Effect of Metallicity-Dependent T-tau Relations on Calibrated Stellar Models
- Grain Physics and Rosseland Mean Opacities
Cited by in corpus (34)
- Standing on the shoulders of Dwarfs: the Kepler asteroseismic LEGACY sample II - radii, masses, and ages
- On Variations Of Pre-Supernova Model Properties
- On Carbon Burning in Super Asymptotic Giant Branch Stars
- Modelling Kepler Red Giants in Eclipsing Binaries:Calibrating the Mixing Length Parameter with Asteroseismology
- On the surface physics affecting solar oscillation frequencies
- Red Supergiants as Cosmic Abundance Probes: The Sculptor Galaxy NGC 300
- The fates of massive stars: exploring uncertainties in stellar evolution with METISSE
- Stellar models with mixing length and T(tau) relations calibrated on 3D convection simulations
- Asteroseismology of 36 Kepler subgiants -- II: Determining ages from detailed modelling
- The asteroseismic surface effect from a grid of 3D convection simulations. I. Frequency shifts from convective expansion of stellar atmospheres
- Calibration of the mixing length theory for structures of helium-dominated atmosphere white dwarfs
- On The Development of Multidimensional Progenitor Models For Core-collapse Supernovae
- On the Interpretation of Sub-Giant Branch Morphologies of Intermediate-Age Star Clusters with Extended Main Sequence Turnoffs
- Testing stellar evolution models with the retired A star HD 185351
- Tess asteroseismology of the known planet host star Fornacis
- Multiple populations in massive star clusters under the magnifying glass of photometry: Theory and tools
- Spherical-shell boundaries for two-dimensional compressible convection in a star
- Theoretical oscillation frequencies for solar-type dwarfs from stellar models with -atmospheres
- Axisymmetric Modes in Magnetic Flux Tubes with Internal and External Magnetic Twist
- A solar twin in the eclipsing binary LL Aqr
- Detection of Solar-Like Oscillations, Observational Constraints, and Stellar Models for Cyg, the Brightest Star Observed by the {\it Kepler} Mission
- Convective Excitation and Damping of Solar-like Oscillations
- The amplitude of solar p-mode oscillations from three-dimensional convection simulations
- Mending the structural surface effect of 1D stellar structure models with non-solar metallicities based on interpolated 3D envelopes
- Chemical mixing in low mass stars: I. Rotation against atomic diffusion including radiative accelerations
- Damping rates and frequency corrections of Kepler LEGACY stars
- Bayesian inference of stellar parameters based on 1D stellar models coupled with 3D envelopes
- Surface effects in solar-like oscillators
- Stellar evolution and modelling stars
- Asteroseismology of red giants & galactic archaeology
- Mixing-length estimates from binary systems. A theoretical investigation on the estimation errors
- Mixing-length calibration from field stars. An investigation on statistical errors, systematic biases, and spurious metallicity trends
- The more the merrier: grid based modelling of Kepler dwarfs with 5-dimensional stellar grids
- Chemical element transport in stellar evolution models