Horizontal Branch Stars and the Ultraviolet Universe
arXiv:0708.2445 · doi:10.1007/978-0-387-87621-4_27
Abstract
Extremely hot horizontal branch (HB) stars and their progeny are widely considered to be responsible for the "ultraviolet upturn" (or UVX) phenomenon observed in elliptical galaxies and the bulges of spirals. Yet, the precise evolutionary channels that lead to the production of these stars remain the source of much debate. In this review, we discuss two key physical ingredients that are required in order for reliable quantitative models of the UV output of stellar populations to be computed, namely, the mass loss rates of red giant branch stars and the helium enrichment "law" at high metallicities. In particular, the recent evidence pointing towards a strong enhancement in the abundances of the alpha-elements in the Galactic bulge (compared to the disk), and also the available indications of a similar overabundance in (massive) elliptical galaxies, strongly suggest that the helium abundance Y may be higher in ellipticals and bulges than it is in spiral disks by an amount that may reach up to 0.15 at [Fe/H] ~ +0.5. If so, this would strongly favor the production of hot HB stars at high metallicity in galactic spheroids. We also discuss the existence of mass loss recipes beyond the commonly adopted Reimers "law" that are not only more consistent with the available empirical data, but also much more favorable to the production of extended HB stars at high metallicity. Finally, we discuss new empirical evidence that suggests that different evolutionary channels may be responsible for the production of EHB stars in the field and in clusters.
14 pages, four figures. Invited review, to appear in New Quests in Stellar Astrophysics II: The Ultraviolet Properties of Evolved Stellar Populations (proceedings of the Puerto Vallarta conference)
References in corpus (19)
- Elemental Abundance Survey of The Galactic Thick Disk
- A Triple Main Sequence in the Globular Cluster NGC 2808
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- Stellar Multiplicity and the IMF: Most Stars Are Single
- Abundances of Baade's Window Giants from Keck/HIRES Spectra: II. The Alpha- and Light Odd Elements
- Oxygen, Sodium, Magnesium and Aluminium as tracers of the Galactic Bulge Formation
- A binary model for the UV-upturn of elliptical galaxies (MNRAS version)
- Oxygen abundances in the Galactic Bulge: evidence for fast chemical enrichment
- NGC 6791: an exotic open cluster or the nucleus of a tidally disrupted galaxy?
- NGC 6441: another indication for a very high helium content in Globular Cluster stars
- The core binary fractions of star clusters from realistic simulations
- Chemical Evolution of the Galactic Bulge as Derived from High-Resolution Infrared Spectroscopy of K and M Red Giants
- Formation & evolution of the Galactic bulge: constraints from stellar abundances
- The First Detailed Abundances for M giants in the inner Bulge from Infrared Spectroscopy
- First full evolutionary computation of the He-flash induced mixing in Population II stars
- The lack of close binaries among hot horizontal branch stars in NGC6752
- The Look-back Time Evolution of Far-Ultraviolet Flux from the Brightest Cluster Elliptical Galaxies at z < 0.2
- On the remote Galactic globular cluster NGC 2419
- The elliptical galaxies NGC 1052 and NGC 7796: stellar populations and abundance alpha/Fe ratio