Model atmospheres of chemically peculiar stars: Self-consistent empirical stratified model of HD24712
arXiv:0903.3474 · doi:10.1051/0004-6361/200911623
Abstract
High-resolution spectra of some chemically peculiar stars clearly demonstrate the presence of strong abundance gradients in their atmospheres. However, these inhomogeneities are usually ignored in the standard scheme of model atmosphere calculations, braking the consistency between model structure and spectroscopically derived abundance pattern. In this paper we present first empirical self-consistent stellar atmosphere model of roAp star HD24712, with stratification of chemical elements included, and which is derived directly from the observed profiles of spectral lines without time-consuming simulations of physical mechanisms responsible for these anomalies. We used the LLmodels stellar model atmosphere code and DDAFIT minimization tool for analysis of chemical elements stratification and construction of self-consistent atmospheric model. Empirical determination of Pr and Nd stratification in the atmosphere of HD24712 is based on NLTE line formation for Prii/iii and Ndii/iii with the use of the DETAIL code. Based on iterative procedure of stratification analysis and subsequent re-calculation of model atmosphere structure we constructed a self-consistent model of HD24712, i.e. the model which temperature-pressure structure is consistent with results of stratification analysis. It is shown that stratification of chemical elements leads to the considerable changes in model structure as to compare with non-stratified homogeneous case. We find that accumulation of REE elements allows for the inverse temperature gradient to be present in upper atmosphere of the star with the maximum temperature increase of about 600K.
Comments: Accepted by A&A, 16 pages, 10 figures, 3 tables
References in corpus (10)
- A non-LTE study of neutral and singly-ionized calcium in late-type stars
- Non-LTE line formation for heavy elements in four very metal-poor stars
- Rare-earth elements in the atmosphere of the magnetic chemically peculiar star HD 144897. New classification of the Nd III spectrum
- Chemical stratification in the atmosphere of Ap star HD 133792. Regularized solution of the vertical inversion problem
- Isotopic anomaly and stratification of Ca in magnetic Ap stars
- Theoretical analysis of the atmospheres of CP stars. Effects of the individual abundance patterns
- Pulsation in the atmosphere of the roAp star HD 24712. I. Spectroscopic observations and radial velocity measurements
- Model atmospheres of chemically peculiar stars: Self-consistent empirical stratified model of HD24712
- Modelling element distributions in the atmospheres of magnetic Ap stars
- Non-LTE line formation for Pr II and Pr III in A and Ap stars
Cited by in corpus (23)
- Model atmospheres of chemically peculiar stars: Self-consistent empirical stratified model of HD24712
- Testing excitation models of rapidly oscillating Ap stars with interferometry
- Modelling the light variability of the Ap star epsilon Ursae Majoris
- Realistic model atmosphere and revised abundances of the coolest Ap star HD101065
- Abundances determined using Si II and Si III in B-type stars: evidence for stratification
- Discovery of secular variations in the atmospheric abundances of magnetic Ap stars
- Magnetic field topology and chemical abundance distributions of the young, rapidly rotating chemically peculiar star HR5624
- Three-dimensional magnetic and abundance mapping of the cool Ap star HD 24712 I. Spectropolarimetric observations in all four Stokes parameters
- A self consistent chemically stratified atmosphere model for the roAp star 10 Aquilae
- Pulsations in the atmosphere of the roAp star HD 24712 II. Theoretical models
- Three-dimensional magnetic and abundance mapping of the cool Ap star HD 24712 II. Two-dimensional Magnetic Doppler Imaging in all four Stokes parameters
- Magnetic Doppler imaging considering atmospheric structure modifications due to local abundances: a luxury or a necessity?
- Fundamental parameters of bright Ap stars from wide-range energy distributions and advanced atmospheric models
- Statistical analysis of roAp, He-weak and He-rich stars
- Fundamental parameters and evolutionary status of the magnetic chemically peculiar stars HD 188041 (V1291 Aquilae), HD 111133 (EP Virginis), and HD 204411. Spectroscopy versus interferometry
- Fundamental properties of a selected sample of Ap stars: Inferences from interferometric and asteroseismic constraints
- A theoretical tool for the study of radial velocities in the atmospheres of roAp stars
- The anomalous atmospheric structure of the strongly magnetic Ap star HD166473
- Project VeSElkA: Abundance analysis of chemical species in HD41076 and HD148330
- Abundance and stratification analysis of the CP star HD 103498
- The spots on Ap stars
- Fundamental parameters of the Ap-stars GO And, 84 UMa, and Psc
- NLTE atmospheric modelling of the ultra-hot Jupiter WASP-178b and comparison with UV and optical observations