Combining BRITE and ground-based photometry for the Beta Cephei star Nu Eridani: impact on photometric pulsation mode identification and detection of several g modes
arXiv:1609.09300 · doi:10.1093/mnras/stw2518
Abstract
We report a simultaneous ground and space-based photometric study of the Beta Cephei star Nu Eridani. Half a year of observations have been obtained by four of the five satellites constituting BRITE-Constellation, supplemented with ground-based photoelectric photometry. We show that carefully combining the two data sets virtually eliminates the aliasing problem that often hampers time-series analyses. We detect 40 periodic signals intrinsic to the star in the light curves. Despite a lower detection limit we do not recover all the pressure and mixed modes previously reported in the literature, but we newly detect six additional gravity modes. This behaviour is a consequence of temporal changes in the pulsation amplitudes that we also detected for some of the p modes. We point out that the dependence of theoretically predicted pulsation amplitude on wavelength is steeper in visual passbands than those observationally measured, to the extent that the three dominant pulsation modes of Nu Eridani would be incorrectly identified using data in optical filters only. We discuss possible reasons for this discrepancy.
11 pages, 5 figures, 4 tables, accepted for publication in MNRAS
References in corpus (3)
Cited by in corpus (10)
- Variability of OB stars from TESS southern Sectors 1-13 and high-resolution IACOB and OWN spectroscopy
- Interpretation of the BRITE oscillation data of the hybrid pulsator Eridani: a call for the modification of stellar opacities
- BRITE-Constellation: Data processing and photometry
- Seismic modelling of early B-type pulsators observed by BRITE: I. Ophiuchi
- Asteroseismology of Cephei stars: The stellar inferences tested in hare and hound exercises
- Space Photometry with BRITE-Constellation
- Searching for Possible Exoplanet Transits from BRITE Data through a Machine Learning Technique
- Rotational modulation and single g-mode pulsation in the B9pSi star HD174356?
- Onboard Dynamic Image Exposure Control for the Star-Planet Activity Research CubeSat (SPARCS)
- An observer's view on the future of asteroseismology