Helium-Abundance and Other Composition Effects on the Properties of Stellar Surface Convection in Solar-like Main-sequence Stars
arXiv:1310.0475 · doi:10.1088/0004-637X/778/2/117
Abstract
We investigate the effect of helium abundance and -element enhancement on the properties of convection in envelopes of solar-like main-sequence stars stars using a grid of 3D radiation hydrodynamic simulations. Helium abundance increases the mean molecular weight of the gas, and alters opacity by displacing hydrogen. Since the scale of the effect of helium may depend on the metallicity, the grid consists of simulations with three helium abundances (), each with two metallicities (. We find that changing the helium mass fraction generally affects structure and convective dynamics in a way opposite to that of metallicity. Furthermore, the effect is considerably smaller than that of metallicity. The signature of helium differs from that of metallicity in the manner in which the photospheric velocity distribution is affected. \rev{We also find that helium abundance and surface gravity behave largely in similar ways, but differ in the way they affect the mean molecular weight}. A simple model for spectral line formation suggests that the bisectors and absolute Doppler shifts of spectral lines depends on the helium abundance. We look at the effect of -element enhancement and find that it has a considerably smaller effect on the convective dynamics in the SAL compared to that of helium abundance.
Accepted for publication in ApJ
References in corpus (7)
- The Dartmouth Stellar Evolution Database
- The Stagger-grid: A Grid of 3D Stellar Atmosphere Models - I. Methods and General Properties
- YREC: The Yale Rotating Stellar Evolution Code
- 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
- An asteroseismic signature of helium ionization
- Variation of Stellar Envelope Convection and Overshoot with Metallicity
Cited by in corpus (10)
- Metallicity effect on stellar granulation detected from oscillating red giants in open clusters
- Stellar models with mixing length and T(tau) relations calibrated on 3D convection simulations
- On the impact of the structural surface effect on global stellar properties and asteroseismic analyses
- The Effect of Metallicity-Dependent T-tau Relations on Calibrated Stellar Models
- The Axial Rotation and Variable Macroturbulence of RR Lyrae and Red Horizontal Branch Stars
- Improved calibration of the radii of cool stars based on 3D simulations of convection: implications for the solar model
- On Granulation and Irregular Variation of Red Supergiants
- Entropy in adiabatic regions of convection simulations
- Stellar evolution models with entropy-calibrated mixing-length parameter: application to red giants
- A New Approach to Solar Flare Prediction