A self-consistent empirical model atmosphere, abundance and stratification analysis of the benchmark roAp star alpha Circini
arXiv:0903.3512 · doi:10.1051/0004-6361/200911653
Abstract
Chemically peculiar (CP) stars are unique natural laboratories for investigation of the microscopic diffusion processes of chemical elements. The element segregation under the influence of gravity and radiation pressure leads to the appearance of strong abundance gradients in the atmospheres of CP stars. Consequently, the atmospheric temperature-pressure structure of these objects could deviate significantly from the atmospheres of normal stars with homogeneous abundances. In this study we performed a self-consistent, empirical model atmosphere study of the brightest rapidly oscillating Ap star alpha Cir. We account for chemical stratification in the model atmosphere calculations and assess the importance of non-uniformed vertical element distribution on the model structure, energy distribution and hydrogen line profiles. Based on an iterative procedure of the chemical abundance analysis of 52 ions of 35 elements, stratification modeling of 4 elements (Si, Ca, Cr and Fe) and subsequent re-calculations of the atmospheric structure, we derived a new model atmosphere of alpha Cir, which is consistent with the inferred atmospheric chemistry of the star. We find Teff=7500 K, logg=4.1, and demonstrate that chemical stratification has a noticeable impact on the model structure and modifies the formation of the hydrogen Balmer lines. Our spectroscopically determined Teff of alpha Cir agrees with the fundamental effective temperature of this star. This shows that temperatures inferred in detailed spectroscopic analyses of cool magnetic CP stars are not affected by a large systematic bias.
14 pages, 11 figures; accepted for publication in Astronomy & Astrophysics
References in corpus (10)
- Searching for links between magnetic fields and stellar evolution. I. A survey of magnetic fields in open cluster A- and B-type stars with FORS1
- Chemically peculiar stars and their temperature calibration
- Chemical stratification in the atmosphere of Ap star HD 133792. Regularized solution of the vertical inversion problem
- Pulsation tomography of rapidly oscillating Ap stars. Resolving the third dimension in peculiar pulsating stellar atmospheres
- Isotopic anomaly and stratification of Ca in magnetic Ap stars
- The fundamental parameters of the roAp star alpha Circini
- 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
- Line profile variations in rapidly oscillating Ap stars: resolution of the enigma
- Effective temperatures of magnetic CP stars from full spectral energy distributions
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