Amplitude variability in satellite photometry of the non-radially pulsating O9.5V star zeta Oph
arXiv:1402.6551 · doi:10.1093/mnras/stu398
Abstract
We report a time-series analysis of satellite photometry of the non-radially pulsating Oe star zeta Oph, principally using data from SMEI obtained 2003--2008, but augmented with MOST and WIRE results. Amplitudes of the strongest photometric signals, at 5.18, 2.96, and 2.67/d, each vary independently over the 6-year monitoring period (from ca. 30 to <2 mmag at 5.18/d), on timescales of hundreds of days. Signals at 7.19/d and 5.18/d have persisted (or recurred) for around two decades. Supplementary spectroscopic observations show an H-alpha emission episode in 2006; this coincided with small increases in amplitudes of the three strongest photometric signals.
MNRAS, in press
References in corpus (6)
- A Pulsational Mechanism for Producing Keplerian Disks around Be Stars
- Asteroseismology of red giants: photometric observations of Arcturus by SMEI
- Oscillations in Beta UMi - Observations with SMEI
- The period and amplitude changes of Polaris (alpha UMi) from 2003 to 2007 measured with SMEI
- A new level of photometric precision: WIRE observations of eclipsing binary stars
- SMEI observations of previously unseen pulsation frequencies in gamma Doradus
Cited by in corpus (5)
- Variability of OB stars from TESS southern Sectors 1-13 and high-resolution IACOB and OWN spectroscopy
- BRITE-Constellation high-precision time-dependent photometry of the early-O-type supergiant Puppis unveils the photospheric drivers of its small- and large-scale wind structures
- MOST detects corotating bright spots on the mid-O type giant ξ Persei
- Similar but different: the varied landscape of Onfp/Oef stars variability
- Large-scale variability in macroturbulence driven by pulsations in the rapidly rotating massive star Zeta Oph from high-cadence ESPRESSO spectroscopy and TESS photometry