Zinc abundances of planetary nebulae
arXiv:1404.2524 · doi:10.1093/mnras/stu696
Abstract
Zinc is a useful surrogate element for measuring Fe/H as, unlike iron, it is not depleted in the gas phase media. Zn/H and O/Zn ratios have been derived using the [Zn IV] emission line at 3.625um for a sample of nine Galactic planetary nebulae, seven of which are based upon new observations using the VLT. Based on photoionization models, O/O++ is the most reliable ionisation correction factor for zinc that can readily be determined from optical emission lines, with an estimated accuracy of 10% or better for all targets in our sample. The majority of the sample is found to be sub-solar in [Zn/H]. [O/Zn] in half of the sample is found to be consistent with Solar within uncertainties, whereas the remaining half are enhanced in [O/Zn]. [Zn/H] and [O/Zn] as functions of Galactocentric distance have been investigated and there is little evidence to support a trend in either case.
Accepted MNRAS, 11 pages, 8 figures
References in corpus (7)
- The 2013 Release of Cloudy
- Nucleosynthesis Predictions for Intermediate-Mass AGB Stars: Comparison to Observations of Type I Planetary Nebulae
- Elemental abundances of Galactic bulge planetary nebulae from optical recombination lines
- Planetary nebulae abundances and stellar evolution
- Chemical Abundances and Dust in Planetary Nebulae in the Galactic Bulge
- White dwarf masses derived from planetary nebulae modelling
- Disk evaporation in a planetary nebula
Cited by in corpus (5)
- Evolution and nucleosynthesis of asymptotic giant branch stellar models of low metallicity
- Nebular spectroscopy: A guide on H II regions and planetary nebulae
- Helium enrichment and Carbon-star Production in Metal-rich Populations
- The Abundances of Light Neutron-Capture Elements in Planetary Nebulae III. The Impact of New Atomic Data on Nebular Selenium and Krypton Abundance Determinations
- Abundances in Galactic Bulge planetary nebulae from optical, ultraviolet and infrared observations