Abundance studies of sdB stars using UV echelle HST/STIS spectroscopy
arXiv:astro-ph/0603069 · doi:10.1051/0004-6361:20053948
Abstract
Aims: We test the hypothesis that the pulsations in sdB stars are correlated with the surface abundances of iron-group elements. Any correlation might explain why, when given two spectroscopically similar stars, one will pulsate while the other will not. Methods: We have obtained high-resolution ultraviolet spectra two pulsating and three non-pulsating sdB stars using the Space Telescope Imaging Spectrograph onboard the Hubble Space Telescope. We determined abundances for 25 elements including the iron group and even heavier elements such as tin and lead using LTE curve-of-growth and spectrum synthesis techniques. Results: We find no clear correlation between pulsations and metal abundances, and we comment on the resulting implications, including whether it is possible to determine the difference between a pulsating and a non-pulsating sdB spectroscopically. In addition to the main goal of our observations, we have also investigated the effect of supersolar metallicity on fundamental parameter determination, possible trends with iron abundance, and the hypothesis that weak winds may be selectively removing elements from the stellar envelopes. These effects provide challenges to stellar atmosphere modelling and diffusion models for sdB stars.
14 pages, 12 figures, accepted for publication in A&A
Cited by in corpus (28)
- A selection of hot subluminous stars in the GALEX survey II. Subdwarf atmospheric parameters
- White dwarf and subdwarf stars in the Sloan Digital Sky Survey Data Release 14
- The hot subdwarf B + white dwarf binary KPD 1930+2752 - a Supernova Type Ia progenitor candidate
- Hot subdwarf binaries from the MUCHFUSS project - Analysis of 12 new systems and a study of the short-period binary population
- The population of hot subdwarf stars studied with Gaia -- IV. Catalogues of hot subluminous stars based on Gaia EDR3
- Mass-loss and diffusion in subdwarf B stars and hot white dwarfs: do weak winds exist?
- New binaries among UV-selected, hot subdwarf stars and population properties
- The catalogue of radial velocity variable hot subluminous stars from the MUCHFUSS project
- Discovery of extremely lead-rich subdwarfs: does heavy metal signal the formation of subdwarf B stars?
- A stripped helium star in the potential black hole binary LB-1
- Composite hot-subdwarf binaries -- I. The spectroscopically confirmed sdB sample
- Discovery of a variable lead-rich hot subdwarf: UVO 0825+15
- A new class of pulsating hot subdwarfs
- Mode identification for Balloon 090100001 using combined multicolour photometry and spectroscopy
- Radial velocity variability and evolution of hot subdwarf stars
- A NLTE analysis of the hot subdwarf O star BD+28 4211. II. The optical spectrum
- Spectral analysis of four surprisingly similar hot hydrogen-rich subdwarf O stars
- A seven-Earth-radius helium-burning star inside a 20.5-min detached binary
- Surface abundance and the hunt for stratification in chemically peculiar hot subdwarfs: PG 0909+276 and UVO 0512-08
- Time-series Spectroscopy and Photometry of the Pulsating Subdwarf B Star PG 1219+534 (KY UMa)
- Confirming new white dwarf-ultracool dwarf binary candidates
- Identification of blue high proper motion objects in the Tycho-2 and 2MASS catalogues using Virtual Observatory tools
- Constraints on the winds of hot subdwarf stars from X-ray observations of two sdB binaries with compact companions: CD -30 11223 and PG 1232-136
- Improved determination of the atmospheric parameters of the pulsating sdB star Feige 48
- A Grid of Synthetic Spectra for Subdwarfs: Non-LTE line-blanketed atmosphere models
- Hot subdwarf stars from the Hamburg Quasar Survey
- New Level Resolved Ground and Excited State Pb III, IV, V & VI Photoionization Cross Sections for Heavy Metal Subdwarf Modeling
- Discovery and analysis of three magnetic hot subdwarf stars: evidence for merger-induced magnetic fields