Chemical stratification in the atmosphere of Ap star HD 133792. Regularized solution of the vertical inversion problem
arXiv:astro-ph/0609312 · doi:10.1051/0004-6361:20065607
Abstract
High spectral resolution studies of cool Ap stars reveal conspicuous anomalies of the shape and strength of many absorption lines. This is a signature of large atmospheric chemical gradients produced by the selective radiative levitation and gravitational settling of chemical species. Here we present a new approach to mapping the vertical chemical structures in stellar atmospheres. We have developed a regularized chemical inversion procedure that uses all information available in high-resolution stellar spectra. The new technique for the first time allowed us to recover chemical profiles without making a priori assumptions about the shape of chemical distributions. We have derived average abundances and applied the vertical inversion procedure to the high-resolution VLT UVES spectra of the weakly magnetic, cool Ap star HD 133792. Our analysis yielded improved estimates of the atmospheric parameters of HD 133792. We show that this star has negligible vsini and the mean magnetic field modulus <B>=1.1+/-0.1 kG. We have derived average abundances for 43 ions and obtained vertical distributions of Ca, Si, Mg, Fe, Cr, and Sr. All these elements except Mg show high overabundance in the deep layers and solar or sub-solar composition in the upper atmosphere of HD 133792. In contrast, the Mg abundance increases with height. We find that transition from the metal-enhanced to metal-depleted zones typically occurs in a rather narrow range of depths in the atmosphere of HD 133792. Based on the derived photospheric abundances, we conclude that HD 133792 belongs to the rare group of evolved cool Ap stars, which possesses very large Fe-peak enhancement, but lacks a prominent overabundance of the rare-earth elements.
Accepted by A&A; 12 pages, 9 figures
References in corpus (1)
Cited by in corpus (19)
- Chemically peculiar stars and their temperature calibration
- 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
- Modelling element distributions in the atmospheres of magnetic Ap stars
- Magnetic field topology and chemical abundance distributions of the young, rapidly rotating chemically peculiar star HR5624
- Magnetic field topology and chemical spot distributions in the extreme Ap star HD 75049
- Heavy Calcium in CP Stars
- 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
- Stratification and Isotope Separation in CP Stars
- The Paschen-Back effect in the Li I 6708 A line and the presence of lithium in cool magnetic Ap stars
- Surface structure of 45 Hercules: An otherwise unremarkable Ap star with a surprisingly weak magnetic field
- Comprehensive study of the magnetic stars HD 5797 and HD 40711 with large chromium and iron overabundances
- Searching for magnetic fields in pulsating A-type stars: the discovery of a strong field in the probable delta Sct star HD340577 and a null result for the gamma Dor star HR8799
- BD+30549: young helium-weak silicon star in NGC 1333 star-forming region
- Doppler imaging of a southern ApSi star HD 152564
- HR 710 (HD 15144): An ultra-Sr-rich, magnetic Ap star with a close companion
- Empirical chemical stratifications in magnetic Ap stars: questions of uniqueness
- Mass-effective temperature-surface gravity relation for intermediate-mass main-sequence stars