Using broadband photometry to examine the nature of Long Secondary Periods in red giants
arXiv:1501.00748 · doi:10.1093/mnras/stv002
Abstract
Long-term light curves have recently become available for large numbers of the more luminous stars in the SMC. We have used these light curves, along with OGLE and light curves, to examine the variability of a sample of luminous red giants in the SMC which show prominent long secondary periods (LSPs). The origin of the LSPs is currently unknown. In oxygen-rich stars, we found that while most broad band colours (e.g. ) get redder when an oxygen-rich star dims during its LSP cycle, the - colour barely changes and sometimes becomes bluer. We interpret the - colour changes as being due to increasing water vapour absorption during declining light caused by the development a layer of dense cool gas above the photosphere. This result and previous observations which indicate the development of a chromosphere between minimum to maximum light suggest that the LSP phenomenon is associated with the ejection of matter from the stellar photosphere near the beginning of light decline. We explore the possibility that broadband light variations from the optical to the near-IR regions can be explained by either dust absorption by ejected matter or large spots on a rotating stellar surface. However, neither model is capable of explaining the observed light variations in a variety of colour-magnitude diagrams. We conclude that some other mechanism is responsible for the light variations associated with LSPs in red giants.
21 pages, 14 figures, accepted for publication in MNRAS
References in corpus (5)
- Non-radial oscillations in M-giant semi-regular variables: Stellar models and Kepler observations
- Ellipsoidal Variability and Long Secondary Periods in MACHO Red Giant Stars
- The variable mass loss of the AGB star WX Psc as traced by the CO J=1-0 through 7-6 lines and the dust emission
- The Light Curve Shapes as a Key to Resolving the Origin of Long Secondary Periods in Red Giant Stars
- H2O vapor excitation in dusty AGB envelopes. A PACS view of OH 127.8+0.0
Cited by in corpus (7)
- The pulsation modes, masses and evolution of luminous red giants
- Binarity as the Origin of Long Secondary Periods in Red Giant Stars
- Infrared Spectroscopy of Symbiotic Stars. XII. The Neutron Star SyXB System 4U 1700+24 = V934 Herculis
- Semi-regular red giants as distance indicators I. The period-luminosity relations of semi-regular variables revisited
- Periodicities of the RV Tau-type pulsating star DF Cygni: a combination of Kepler data with ground-based observations
- Long Secondary Periods in luminous red giant variables
- Connection between the Long Secondary Period phenomenon and the red giant evolution