On the co-existence of chemically peculiar Bp stars, slowly pulsating B stars and constant B stars in the same part of the H-R diagram
arXiv:astro-ph/0702111 · doi:10.1051/0004-6361:20066940
Abstract
Aims. In order to better model massive B-type stars, we need to understand the physical processes taking place in slowly pulsating B (SPB) stars, chemically peculiar Bp stars, and non-pulsating normal B stars co-existing in the same part of the H-R diagram. Methods. We carry out a comparative study between samples of confirmed and well-studied SPB stars and a sample of well-studied Bp stars with known periods and magnetic field strengths. We determine their evolutionary state using accurate HIPPARCOS parallaxes and Geneva photometry. We discuss the occurrence and strengths of magnetic fields as well as the occurrence of stellar pulsation among both groups. Further, we make a comparison of Geneva photometric variability for both kinds of stars. Results. The group of Bp stars is significantly younger than the group of SPB stars. Longitudinal magnetic fields in SPB stars are weaker than those of Bp stars, suggesting that the magnetic field strength is an important factor for B type stars to become chemically peculiar. The strongest magnetic fields appear in young Bp stars, indicating a magnetic field decay in stars at advanced ages. Rotation periods of Bp and pulsation periods of SPB stars are of the same order and the behaviour of Geneva photometric variability of some Bp stars cannot be distinguished from the variability of SPB stars, illustrating the difficulty to interpret the observed variability of the order of days for B-type stars. We consider the possibility that pulsation could be responsible for the variability among chemically peculiar stars. In particular, we show that a non-linear pulsation model is not excluded by photometry for the Bp star HD175362.
Accepted for publication in Astronomy & Astrophysics on 29/01/2007, 8 pages, 9 figures
References in corpus (3)
Cited by in corpus (15)
- Probing the properties of convective cores through g modes: high-order g modes in SPB and gamma Doradus stars
- Gravito-inertial and pressure modes detected in the B3 IV CoRoT target HD 43317
- Magnetic field measurements of O stars with FORS1 at the VLT
- New magnetic field measurements of beta Cephei stars and Slowly Pulsating B stars
- On the use of the Fourier Transform to determine the projected rotational velocity of line-profile variable B stars
- Gaia Data Release 3: Pulsations in main sequence OBAF-type stars
- TESS survey of rotational and pulsational variability of mercury-manganese stars
- First magnetic field models for recently discovered magnetic beta Cephei and slowly pulsating B stars
- Internal rotation and inclinations of slowly pulsating B stars: Evidence of interior angular momentum transport
- Classifying Kepler light curves for 12,000 A and F stars using supervised feature-based machine learning
- Confronting sparse Gaia DR3 photometry with TESS for a sample of around 60,000 OBAF-type pulsators
- Pulsating B stars in the Scorpius-Centaurus Association with TESS
- Identification of pulsational modes in rotating slowly pulsating B-type stars
- Rotational modulation and single g-mode pulsation in the B9pSi star HD174356?
- Learning novel representations of variable sources from multi-modal data via autoencoders