Solar abundance corrections derived through 3D magnetoconvection simulations
arXiv:1006.0231 · doi:10.1088/0004-637X/724/2/1536
Abstract
We explore the effect of the magnetic field when using realistic three-dimensional convection experiments to determine solar element abundances. By carrying out magnetoconvection simulations with a radiation-hydro code (the Copenhagen stagger code) and through a-posteriori spectral synthesis of three Fe I lines, we obtain evidence that moderate amounts of mean magnetic flux cause a noticeable change in the derived equivalent widths compared with those for a non-magnetic case. The corresponding Fe abundance correction for a mean flux density of 200 G reaches up to ~0.1 dex in magnitude. These results are based on space- and time-averaged line profiles over a time span of 2.5 solar hours in the statistically stationary regime of the convection. The main factors causing the change in equivalent widths, namely the Zeeman broadening and the modification of the temperature stratification, act in different amounts and, for the iron lines considered here, in opposite directions; yet, the resulting coincides within a factor two in all of them, even though the sign of the total abundance correction is different for the visible and infrared lines. We conclude that magnetic effects should be taken into account when discussing precise values of the solar and stellar abundances and that an extended study is warranted.
ApJ accepted
References in corpus (6)
- A Substantial Amount of Hidden Magnetic Energy in the Quiet Sun
- Emergence of small-scale magnetic loops through the quiet solar atmosphere
- Solar Carbon Monoxide, Thermal Profiling, and the Abundances of C, O, and their Isotopes
- Determining solar abundances using helioseismology
- The non-LTE line formation of neutral carbon in late-type stars
- On the role of magnetic fields in abundance determinations
Cited by in corpus (35)
- The chemical make-up of the Sun: A 2020 vision
- Target Selection for the Apache Point Observatory Galactic Evolution Experiment (APOGEE)
- The elemental composition of the Sun II. The iron group elements Sc to Ni
- High-precision abundances of elements in solar twin stars: Trends with stellar age and elemental condensation temperature
- How realistic are solar model atmospheres?
- Silicon and Oxygen Abundances in Planet-Host Stars
- Project AMIGA: The Circumgalactic Medium of Andromeda
- The Cosmic Evolution of the Metallicity Distribution of Ionized Gas Traced by Lyman Limit Systems
- Solar neutrinos, helioseismology and the solar internal dynamics
- How magnetic activity alters what we learn from stellar spectra
- The COS CGM Compendium. III: Metallicity and Physical Properties of the Cool Circumgalactic Medium at z<1
- The effect of stellar activity on the spectroscopic stellar parameters of the young solar twin HIP 36515
- Stray-light contamination and spatial deconvolution of slit-spectrograph observations
- Stellar Surface Magneto-Convection as a Source of Astrophysical Noise III. Sun-as-a-star Simulations and Optimal Noise Diagnostics
- Solar Fe abundance and magnetic fields - Towards a consistent reference metallicity
- Three-dimensional non-LTE radiative transfer effects in Fe I lines I. Flux sheet and flux tube geometries
- The solar energetic balance revisited by young solar analogs, helioseismology and neutrinos
- KODIAQ-Z: Metals and Baryons in the Cool Intergalactic and Circumgalactic Gas at 2.2<z<3.6
- Comparison of physical properties of quiet and active regions through the analysis of MHD simulations of the solar photosphere
- The energy of waves in the photosphere and lower chromosphere: IV. Inversion results of Ca II H spectra
- The Quiet-Sun Photosphere and Chromosphere
- Interpretation of Solar Irradiance Monitor measurements through analysis of 3D MHD simulations
- Continuum intensity and [O I] spectral line profiles in solar 3D photospheric models: the effect of magnetic fields
- The statistical distribution of magnetic field strength in G-band bright points
- Thermodynamic fluctuations in solar photospheric three-dimensional convection simulations and observations
- The power spectrum of solar convection flows from high-resolution observations and 3D simulations
- Selected topics in the evolution of low-mass stars
- Gas Accretion via Lyman Limit Systems
- Effects of unresolved magnetic field on Fe I 617.3 and 630.2 nm line shapes
- The solar photospheric silicon abundance according to CO5BOLD: Investigating line broadening, magnetic fields, and model effects
- The polarization signature of photospheric magnetic fields in 3D MHD simulations and observations at disk center
- A study of solar photospheric temperature gradient variation using limb darkening measurements
- Towards Spectroscopically Detecting the Global Latitudinal Temperature Variation on the Solar Surface
- A meta-analysis of the magnetic line broadening in the solar atmosphere
- Solar cycle observations of the Neon abundance in the Sun-as-a-star