Long period variables and mass loss in the globular clusters NGC 362 and NGC 2808
arXiv:1103.5299 · doi:10.1051/0004-6361/201016319
Abstract
The pulsation periods of long period variables (LPVs) depend on their mass and helium abundance as well as on their luminosity and metal abundance. Comparison of the observed periods of LPVs in globular clusters with models is capable of revealing the amount of mass lost on the giant branch and the helium abundance.} {We aim to determine the amount of mass loss that has occurred on the giant branches of the low metallicity globular clusters NGC 362 and NGC 2808. We also aim to see if the LPVs in NGC 2808 can tell us about helium abundance variations in this cluster.} We have used optical monitoring of NGC 362 and NGC 2808 to determine periods for the LPVs in these clusters. We have made linear pulsation models for the pulsating stars in these clusters taking into account variations in mass and helium abundance. Reliable periods have been determined for 11 LPVs in NGC 362 and 15 LPVs in NGC 2808. Comparison of the observed variables with models in the logP - K diagram shows that mass loss of ~0.15-0.2 Msun is required on the first giant branch in these clusters, in agreement with estimates from other methods. In NGC 2808, there is evidence that a high helium abundance of Y~0.4 is required to explain the periods of several of the LPVs. It would be interesting to determine periods for LPVs in other Galactic globular clusters where a helium abundance variation is suspected to see if the completely independent test for a high helium abundance provided by the LPVs can confirm the high helium abundance estimates.
13 pages, 12 figures, accepted for publication in Astronomy & Astrophysics
References in corpus (9)
- Scaled solar tracks and isochrones in a large region of the Z-Y plane I. From the ZAMS to the TP-AGB end for 0.15 - 2.5 Mo stars
- The fraction of second generation stars in Globular Clusters from the analysis of the Horizontal Branch
- The peculiar Horizontal Branch of NGC 2808
- Comparing CN and CH Line Strengths in a Homogeneous Spectroscopic Sample of 8 Galactic Globular Clusters
- Rusty old stars: a source of the missing interstellar iron?
- Spitzer Spectroscopy of Mass Loss and Dust Production by Evolved Stars in Globular Clusters
- Dust, pulsation, chromospheres and their role in driving mass loss from red giants in Galactic globular clusters
- The AGB stars of the intermediate-age LMC cluster NGC 1846 Variability and age determination
- RR Lyrae stars in the southern globular cluster NGC 362
Cited by in corpus (8)
- Gas expulsion in massive star clusters? Constraints from observations of young and gas-free objects
- Near-Infrared Photometry of Globular Clusters Towards the Galactic Bulge: Observations and Photometric Metallicity Indicators
- Spitzer Infrared Spectrographic point source classification in the Small Magellanic Cloud
- Discovery of post-mass-transfer helium-burning red giants using asteroseismology
- The WAGGS project - I. The WiFeS Atlas of Galactic Globular cluster Spectra
- Variable stars in the Globular Cluster NGC 2808
- High-velocity stars in the cores of globular clusters: The illustrative case of NGC 2808
- The period-age relation of long-period variables