Geometry of giant star model atmospheres: A consistency test
arXiv:astro-ph/0603273 · doi:10.1051/0004-6361:20064925
Abstract
We investigate the effect of a geometric inconsistency in the calculation of synthetic spectra of giant stars. Spectra computed with model atmospheres calculated in spherical geometry while using the plane-parallel approximation for line formation calculations (s_p), as well as the fully plane-parallel case (p_p), are compared to the consistently spherical case (s_s). We present abundance differences for solar metallicity models with Teff ranging from 4000 to 6500 K and logg from 0.5 to 3.0 [cgs]. The effects are smaller for s_p calculations (-0.1 dex in the worst case) than for the p_p case (up to +0.35 dex for minority species and at most -0.04 dex for majority species), both with respect to the s_s case. In the s_p case the differences increase slightly with temperature, while in the p_p case they show a more complex behaviour. In both cases the effects decrease with increasing logg and increase with equivalent width. Thus, within the parameter range of F, G and K giants, consistency seems to be less important than using a spherical model atmosphere. The abundance differences due to sphericity effects presented here can be used for error estimation in abundance studies relying on plane-parallel modelling.
12 pages, including 10 figures and 1 table (A&A print format), accepted by A&A
Cited by in corpus (23)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Determining stellar atmospheric parameters and chemical abundances of FGK stars with iSpec
- Modern stellar spectroscopy caveats
- A high resolution VLT/FLAMES study of individual stars in the centre of the Fornax dwarf spheroidal galaxy
- A new library of theoretical stellar spectra with scaled-solar and alpha-enhanced mixtures
- New H-band Stellar Spectral Libraries for the SDSS-III/APOGEE survey
- A new abundance scale for the globular cluster 47 Tuc
- Testing the chemical tagging technique with open clusters
- On the Use of Blanketed Atmospheres as Boundary Conditions for Stellar Evolutionary Models
- Atmospheric parameters and chemical properties of red giants in the CoRoT asteroseismology fields
- The usage of Stromgren photometry in studies of Local Group Dwarf Spheroidal Galaxies - Application to Draco: a new catalogue of Draco members and a study of the metallicity distribution function and radial gradients
- A realistic two-dimensional model of Altair
- Chemical abundances in the globular clusters NGC 5024 and NGC 5466 from optical and infrared spectroscopy
- Lithium abundance in atmospheres of F- and G-type supergiants and bright giants
- Stellar abundances and ages for metal-rich Milky Way globular clusters - Stellar parameters and elemental abundances for 9 HB stars in NGC6352
- Effective temperatures of red supergiants estimated from line-depth ratios of iron lines in the YJ bands, 0.97--1.32 micron
- GSP-spec line list for the parametrisation of Gaia -RVS stellar spectra
- A comparison between X-shooter spectra and PHOENIX models across the HR-diagram
- Three-dimensional hydrodynamical CO5BOLD model atmospheres of red giant stars. IV. Oxygen diagnostics in extremely metal-poor red giants with infrared OH lines
- NLTE Analysis of High Resolution H-band Spectra. II. Neutral Magnesium
- MAGIS (Measuring Abundances of red super Giants with Infrared Spectroscopy) project I. Establishment of an abundance analysis procedure for red supergiants and its evaluation with nearby stars
- A grid of self-consistent MSG (MARCS-StaticWeather-GGchem) cool stellar, sub-stellar, and exoplanetary model atmospheres
- Micro-turbulence across the Hertzsprung-Russell diagram. Observational constrains for stars in the MW