Calibrating Convective properties of Solar-like Stars in the Kepler Field of View
arXiv:1207.2765 · doi:10.1088/2041-8205/755/1/L12
Abstract
Stellar models generally use simple parametrizations to treat convection. The most widely used parametrization is the so-called "Mixing Length Theory" where the convective eddy sizes are described using a single number, α, the mixing-length parameter. This is a free parameter, and the general practice is to calibrate αusing the known properties of the Sun and apply that to all stars. Using data from NASA's Kepler mission we show that using the solar-calibrated αis not always appropriate, and that in many cases it would lead to estimates of initial helium abundances that are lower than the primordial helium abundance. Kepler data allow us to calibrate αfor many other stars and we show that for the sample of stars we have studied, the mixing-length parameter is generally lower than the solar value. We studied the correlation between αand stellar properties, and we find that αincreases with metallicity. We therefore conclude that results obtained by fitting stellar models or by using population-synthesis models constructed with solar values of αare likely to have large systematic errors. Our results also confirm theoretical expectations that the mixing-length parameter should vary with stellar properties.
16 pages, 4 figures, accepted for publication in ApJL
References in corpus (8)
- The Dartmouth Stellar Evolution Database
- Structure and Evolution of Nearby Stars with Planets II. Physical Properties of ~1000 Cool Stars from the SPOCS Catalog
- YREC: The Yale Rotating Stellar Evolution Code
- Asteroseismology of the solar analogs 16 Cyg A & B from Kepler observations
- Spectral models for solar-scaled and alpha-enhanced stellar populations
- A precise asteroseismic age and radius for the evolved Sun-like star KIC 11026764
- A Stellar Model-fitting Pipeline for Asteroseismic Data from the Kepler Mission
- Modelling the components of binaries in Hyades: The dependence of the mixing-length parameter on stellar mass
Cited by in corpus (67)
- How to Constrain Your M Dwarf: measuring effective temperature, bolometric luminosity, mass, and radius
- The Ages of 55 Globular Clusters as Determined Using an Improved delta V_TO^HB Method Along with Color-Magnitude Diagram Constraints, and Their Implications for Broader Issues
- The Stagger-grid: A Grid of 3D Stellar Atmosphere Models - I. Methods and General Properties
- The radius discrepancy in low mass stars: single vs. binaries
- Improvements to stellar structure models, based on a grid of 3D convection simulations. II. Calibrating the mixing-length formulation
- A Grid of 3D Stellar Atmosphere Models of Solar Metallicity: I. General Properties, Granulation and Atmospheric Expansion
- Magnetic Inhibition of Convection and the Fundamental Properties of Low-Mass Stars. I. Stars with a Radiative Core
- The Stagger-grid: A grid of 3D stellar atmosphere models - III. The relation to mixing-length convection theory
- Age Determinations of the Hyades, Praesepe, and Pleiades via MESA Models with Rotation
- The Correlation Between Mixing Length and Metallicity on the Giant Branch: Implications for Ages in the Gaia Era
- Spectroscopic survey of Kepler stars. I. HERMES/Mercator observations of A- and F-type stars
- Stellar Diameters and Temperatures VI. High angular resolution measurements of the transiting exoplanet host stars HD 189733 and HD 209458 and implications for models of cool dwarfs
- Self-Consistent Magnetic Stellar Evolution Models of the Detached, Solar-Type Eclipsing Binary EF Aquarii
- Not All Stars Are the Sun: Empirical Calibration of the Mixing Length for Metal-Poor Stars Using One-dimensional Stellar Evolution Models
- A large sample of calibration stars for Gaia: log g from Kepler and CoRoT
- Characterizing solar-type stars from full-length Kepler data sets using the Asteroseismic Modeling Portal
- The Solar-Stellar Connection
- Investigating the Metallicity-Mixing Length Relation
- Radii, masses, and ages of 18 bright stars using interferometry and new estimations of exoplanetary parameters
- Classically and Asteroseismically constrained 1D Stellar Evolution Models of Centauri A and B using Empirical Mixing Length Calibrations
- Benchmark stars for Gaia: fundamental properties of the Population II star HD140283 from interferometric, spectroscopic and photometric data
- Absolute Ages and Distances of 22 GCs using Monte Carlo Main-Sequence Fitting
- Lithium-7 surface abundance in pre-MS stars. Testing theory against clusters and binary systems
- First asteroseismic limits on the nature of dark matter
- Uncertain Times: The Redshift-Time Relation from Cosmology and Stars
- An Ultra Metal-poor Star Near the Hydrogen-burning Limit
- Variation of Stellar Envelope Convection and Overshoot with Metallicity
- Estimating stellar ages and metallicities from parallaxes and broadband photometry - successes and shortcomings
- The Evolution of Rotation and Magnetic Activity in 94 Aqr Aa from Asteroseismology with TESS
- Testing stellar evolution models with the retired A star HD 185351
- On the Red Giant Branch: Ambiguity in the Surface Boundary Condition Leads to ~100 K Uncertainty in Model Effective Temperatures
- The effects of surface fossil magnetic fields on massive star evolution: IV. Grids of models at Solar, LMC, and SMC metallicities
- Calibrating convective-core overshooting with eclipsing binary systems. The case of low-mass main-sequence stars
- Theory of stellar convection: Removing the Mixing-Length Parameter
- Superadiabaticity and the metallicity independence of the Humphreys-Davidson limit
- Asteroseismic modelling of solar-type stars: A deeper look at the treatment of initial helium abundance
- Testing Metal Poor Stellar Models and Isochrones with HST Parallaxes of Metal Poor Stars
- Hierarchically modelling Kepler dwarfs and subgiants to improve inference of stellar properties with asteroseismology
- Grid-based estimates of stellar ages in binary systems. SCEPtER: Stellar CharactEristics Pisa Estimation gRid
- Globular Clusters in High-Redshift Dwarf Galaxies: A Case Study from the Local Group
- Asteroseismic Inference of Subgiant Evolutionary Parameters with Deep Learning
- The role of stellar expansion on the formation of gravitational wave sources
- The Effect of Metallicity-Dependent T-tau Relations on Calibrated Stellar Models
- Radiative levitation in carbon-enhanced metal-poor stars with s-process enrichment
- Star Cluster Ages in the Gaia Era
- Centauri A as a potential stellar model calibrator: establishing the nature of its core
- Improved calibration of the radii of cool stars based on 3D simulations of convection: implications for the solar model
- Benchmarking Substellar Evolutionary Models Using New Age Estimates for HD 4747 B and HD 19467 B
- Stellar evolution models with entropy-calibrated mixing-length parameter: application to red giants
- Calibrating the α parameter of convective efficiency using observed stellar properties
- The ages of (the oldest) stars
- First detection of oscillations in the Halo giant HD 122563: validation of seismic scaling relations and new fundamental parameters
- Entropy in adiabatic regions of convection simulations
- Helium-Abundance and Other Composition Effects on the Properties of Stellar Surface Convection in Solar-like Main-sequence Stars
- AME - Asteroseismology Made Easy. Estimating stellar properties by use of scaled models
- Red giants evolutionary status determination: the complete Kepler catalog
- Red supergiant stars in IC 1613 and metallicity-dependent mixing length in the evolutionary model
- Uncertainties in models of stellar structure and evolution
- Asteroseismology of the young open cluster NGC 2516 II. Constraining cluster age using gravity-mode pulsators
- Uncertainties in asteroseismic grid-based estimates of the ages of halo stars
- Photometric stellar parameters for asteroseismology and Galactic studies
- Uncertainties in asteroseismic grid-based estimates of stellar ages. SCEPtER: Stellar CharactEristics Pisa Estimation gRid
- Early Results from APOKASC
- Mixing-length estimates from binary systems. A theoretical investigation on the estimation errors
- The more the merrier: grid based modelling of Kepler dwarfs with 5-dimensional stellar grids
- Mixing-length calibration from field stars. An investigation on statistical errors, systematic biases, and spurious metallicity trends
- Testing the 3-equation Kuhfuss Convection Model using the Sun