Evidence for mass ejection associated with long secondary periods in red giants
arXiv:0910.4418 · doi:10.1088/0004-637X/707/1/573
Abstract
Approximately 30% of luminous red giants exhibit a Long Secondary Period (LSP) of variation in their light curves, in addition to a shorter primary period of oscillation. The cause of the LSP has so far defied explanation: leading possibilities are binarity and a nonradial mode of oscillation. Here, large samples of red giants in the Large Magellanic Cloud both with and without LSPs are examined for evidence of an 8 or 24 m mid-IR excess caused by circumstellar dust. It is found that stars with LSPs show a significant mid-IR excess compared to stars without LSPs. Furthermore, the near-IR - color seems unaffected by the presence of the 24 m excess. These findings indicate that LSPs cause mass ejection from red giants and that the lost mass and circumstellar dust is most likely in either a clumpy or a disk-like configuration. The underlying cause of the LSP and the mass ejection remains unknown.
6 pages, accepted for publication in ApJ
References in corpus (5)
- Spitzer SAGE survey of the Large Magellanic Cloud II: Evolved Stars and Infrared Color Magnitude Diagrams
- Variability in red supergiant stars: pulsations, long secondary periods and convection noise
- Long Secondary Periods in Variable Red Giants
- Ellipsoidal Variability and Long Secondary Periods in MACHO Red Giant Stars
- Infrared Spectroscopy of Symbiotic Stars. VII. Binary Orbit and Long Secondary Period Variability of CH Cygni
Cited by in corpus (31)
- Optically visible post-AGB/RGB stars and young stellar objects in the Small Magellanic Cloud: candidate selection, spectral energy distributions and spectroscopic examination
- The Period-Luminosity Relation of Red Supergiant Stars in the Small Magellanic Cloud
- The optically bright post-AGB population of the LMC
- Infrared Period-Luminosity Relations of Evolved Variable Stars in the Large Magellanic Cloud
- Red Supergiant Stars in the Large Magellanic Cloud: I. The Period-Luminosity Relation
- Binarity as the Origin of Long Secondary Periods in Red Giant Stars
- Variability of M giant stars based on Kepler photometry: general characteristics
- The onset of the AGB wind tied to a transition between sequences in the period-luminosity diagram
- Identification of a Class of Low-Mass Asymptotic Giant Branch Stars Struggling to Become Carbon Stars in the Magellanic Clouds
- The Light Curve Shapes as a Key to Resolving the Origin of Long Secondary Periods in Red Giant Stars
- The influence of binarity on dust obscuration events in the planetary nebula M 2-29 and its analogues
- Infrared Spectroscopy of Symbiotic Stars. XII. The Neutron Star SyXB System 4U 1700+24 = V934 Herculis
- Long Period Variables in the Large Magellanic Cloud from the EROS-2 survey
- Eccentric Ellipsoidal Red Giant Binaries in the LMC: Complete Orbital Solutions and Comments on Interaction at Periastron
- A Fresh Look at AGB stars in Galactic Open Clusters with Gaia: Impact on Stellar Models and the Initial-Final Mass Relation
- Period-luminosity diagram of long period variables in the Magellanic Clouds. New aspects revealed from Gaia Data Release 2
- Long-period variables in NGC147 and NGC185
- Semi-regular red giants as distance indicators I. The period-luminosity relations of semi-regular variables revisited
- Aldebaran b's temperate past uncovered in planet search data
- Ellipsoidal Variability and the Difference between Sequence D and E Red Giants
- New R Coronae Borealis stars discovered in OGLE-III Galactic Bulge fields from their mid- and near- infrared properties
- Using broadband photometry to examine the nature of Long Secondary Periods in red giants
- The curious case of II Lup: a complex morphology revealed with SAM/NACO and ALMA
- The shapes of light curves of Mira-type variables
- Kepler and the Long Period Variables
- Long Secondary Periods in luminous red giant variables
- Connection between the Long Secondary Period phenomenon and the red giant evolution
- Light and colour variations of Mira variables in the Small Magellanic Cloud
- Comment on the feasibility of carbon burning in Betelgeuse: a response to "The evolutionary stage of Betelgeuse inferred from its pulsation periods," arXiv:2306.00287
- Self-Excited Pulsations and the Instability Strip of Long-Period Variables: the Transition from Small-Amplitude Red Giants to Semi-Regular Variables
- VLTI-GRAVITY measurements of cool evolved stars: II. Pulsation properties and mass-loss process of the Mira star R Car and the red supergiant VX Sgr