Period change and stellar evolution of Cephei stars
arXiv:1509.05433 · doi:10.1051/0004-6361/201526836
Abstract
The Cephei stars represent an important class of massive star pulsators probing the evolution of B-type stars and the transition from main sequence to hydrogen-shell burning evolution. By understanding Cep stars, we gain insights into the detailed physics of massive star evolution such as rotational mixing, convective core overshooting, magnetic fields and stellar winds, all of which play important roles. Similarly, modeling their pulsation provides additional information into their interior structures. Furthermore, measurements of the rate of change of pulsation period offer a direct measure of Cephei stellar evolution. In this work, we compute state-of-the-art stellar evolution models assuming different amounts of initial rotation and convective core overshoot and measure theoretical rates of period change for which we compare to rates previously measured for a sample of Cephei stars. The results of this comparison are mixed. For three stars, the rates are too small to infer any information from stellar evolution models, whereas for three other stars the rates are too large. We infer stellar parameters, such as mass and age, for two Cephei stars: CMa and Cet, that agree well with independent measurements. We explore ideas for why models may not predict the larger rates of period change. In particular, period drifts in Cep stars can artificially lead to overestimated rates of secular period change.
6 pages, 2 figures 2 tables, accepted to A&A
References in corpus (15)
- Pre-Supernova Evolution of Massive Single and Binary Stars
- The VLT-FLAMES survey of massive stars: rotation and nitrogen enrichment as the key to understanding massive star evolution
- An asteroseismic study of the beta Cephei star theta Ophiuchi: constraints on global stellar parameters and core overshooting
- Abundance analysis of prime B-type targets for asteroseismology I. Nitrogen excess in slowly-rotating beta Cephei stars
- Discovery of magnetic fields in the beta Cephei star xi^1 CMa and in several Slowly Pulsating B stars
- An asteroseismic study of the beta Cephei star beta Canis Majoris
- New magnetic field measurements of beta Cephei stars and Slowly Pulsating B stars
- delta Ceti is not monoperiodic: seismic modeling of a beta Cephei star from MOST spacebased photometry
- Constraints on rotational mixing from surface evolution of light elements in massive stars
- First magnetic field models for recently discovered magnetic beta Cephei and slowly pulsating B stars
- A new type of X-ray pulsar
- gamma Peg: testing Vega-like magnetic fields in B stars
- The Beta Cephei instability domain for the new solar composition and with new OP opacities
- Asteroseismology and spectropolarimetry: opening new windows on the internal dynamics of massive stars
- CMa: An Extremely Slowly Rotating Magnetic B0.7 IV Star
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- The pulsating magnetosphere of the extremely slowly rotating magnetic Cep star CMa
- Variability survey of brightest stars in selected OB associations
- The Secret Lives of Cepheids: Evolution, Mass Loss, and Ultraviolet Emission of the Long-Period Classical Cepheid Carinae
- Evolving pulsation of the slowly rotating magnetic Cep star CMa