Evolving pulsation of the slowly rotating magnetic Cep star CMa
arXiv:1912.08347 · doi:10.1093/mnras/staa025
Abstract
Recent BRITE-Constellation space photometry of the slowly rotating, magnetic Cep pulsator CMa permits a new analysis of its pulsation properties. Analysis of the two-colour BRITE data reveals the well-known single pulsation period of d, along with its first and second harmonics. A similar analysis of SMEI and TESS observations yields compatible results, with the higher precision TESS observations also revealing several low-amplitude modes with frequencies below 5 d; some of these are likely modes. The phase lag between photometric and radial velocity maxima - equal to 0.334 cycles - is significantly larger than the typical value of observed in other large-amplitude Cep stars. The phase lag, as well as the strong dependence of phase of maximum light on wavelength, can be reconciled with seismic models only if the dominant mode is the fundamental radial mode. We employ all published photometric and radial velocity measurements, spanning over a century, to evaluate the stability of the pulsation period. The diagram exhibits a clear parabolic shape consistent with a mean rate of period change s/cen. The residuals from the best-fit parabola exhibit scatter that is substantially larger than the uncertainties. In particular, dense sampling obtained during the past 20 years suggests more complex and rapid period variations. Those data cannot be coherently phased with the mean rate of period change, and instead require s/cen. We examine the potential contributions of binarity, stellar evolution, and stellar rotation and magnetism to understand the apparent period evolution.
14 pages, accepted by MNRAS
References in corpus (9)
- The Transiting Exoplanet Survey Satellite
- A Grid of NLTE Line-Blanketed Model Atmospheres of Early B-type Stars
- New Grids of ATLAS9 Model Atmospheres
- Revealing δ Cephei's Secret Companion and Intriguing Past
- The BRITE Constellation nanosatellite mission: Testing, commissioning and operations
- Stellar evolution through the ages: period variations in galactic RRab stars as derived from the GEOS database and TAROT telescopes
- BRITE-Constellation: Data processing and photometry
- The pulsating magnetosphere of the extremely slowly rotating magnetic Cep star CMa
- Evolutionary status of Polaris