Oxygen enrichment in carbon-rich planetary nebulae
arXiv:1502.06043 · doi:10.1093/mnras/stv388
Abstract
We study the relation between the chemical composition and the type of dust present in a group of 20 Galactic planetary nebulae (PNe) that have high quality optical and infrared spectra. The optical spectra are used, together with the best available ionization correction factors, to calculate the abundances of Ar, C, Cl, He, N, Ne, and O relative to H. The infrared spectra are used to classify the PNe in two groups depending on whether the observed dust features are representative of oxygen-rich or carbon-rich environments. The sample contains one object from the halo, eight from the bulge, and eleven from the local disc. We compare their chemical abundances with nucleosynthesis model predictions and with the ones obtained in seven Galactic H II regions of the solar neighbourhood. We find evidence of O enrichment (by 0.3 dex) in all but one of the PNe with carbon-rich dust (CRD). Our analysis shows that Ar, and especially Cl, are the best metallicity indicators of the progenitors of PNe. There is a tight correlation between the abundances of Ar and Cl in all the objects, in agreement with a lockstep evolution of both elements. The range of metallicities implied by the Cl abundances covers one order of magnitude and we find significant differences in the initial masses and metallicities of the PNe with CRD and oxygen-rich dust (ORD). The PNe with CRD tend to have intermediate masses and low metallicities, whereas most of the PNe with ORD show higher enrichments in N and He, suggesting that they had high-mass progenitors.
Accepted for publication in MNRAS. 14 pages, 8 figures, 5 tables
References in corpus (10)
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- PyNeb: a new tool for analyzing emission lines. I. Code description and validation of results
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- Faint emission lines in the Galactic H II regions M16, M20 and NGC 3603
- Elemental abundances of Galactic bulge planetary nebulae from optical recombination lines
- Bayesian posterior classification of planetary nebulae according to the Peimbert types
- The ionizing radiation from massive stars and its impact on HII regions: results from modern model atmospheres
- Chemical abundances in Galactic planetary nebulae with Spitzer spectra
- A Multiwavelength Analysis of the Halo Planetary Nebula DdDm-1
Cited by in corpus (27)
- The 12C(a,g)16O reaction and its implications for stellar helium burning
- Nebular spectroscopy: A guide on H II regions and planetary nebulae
- The Galactic radial abundance gradients of C, N, O, Ne, S, Cl and Ar from deep spectra of H II regions
- APOGEE Chemical Abundances of the Sagittarius Dwarf Galaxy
- The Te[N II]-Te[O III] temperature relation in H II regions and the reliability of strong-line methods
- On the Production of He, C and N by Low and Intermediate Mass Stars: A Comparison of Observed and Model-Predicted Planetary Nebula Abundances
- The evolution of Galactic planetary nebula progenitors through the comparison of their nebular abundances with AGB yields
- C/O ratios in planetary nebulae with dual-dust chemistry from faint optical recombination lines
- The survey of planetary nebulae in Andromeda (M 31) V. Chemical enrichment of the thin and thicker discs of Andromeda. Oxygen to argon abundance ratios for planetary nebulae and H II regions
- The planetary nebula IC 4776 and its post-common-envelope binary central star
- IFU spectroscopy of Southern Planetary Nebulae IV: A Physical Model for IC 418
- The MUSE view of the planetary nebula NGC 3132
- The chemistry of planetary nebulae in the outer regions of M31
- Neutron-capture element abundances in the planetary nebula NGC 5315 from deep optical and near-infrared spectrophotometry
- Chlorine Abundances in Cool Stars
- The impact of spectra quality on nebular abundances
- Physical properties of the fluorine and neutron-capture element-rich PN Jonckheere 900
- MUSE spectroscopy of the high abundance discrepancy planetary nebula NGC 6153
- Spectroscopic Study of M33 with LAMOST survey. I. Chemical gradients from nebulae
- The Galactic Chemical Evolution of Chlorine
- Ionization correction factors for sodium, potassium, and calcium in planetary nebulae
- Atomic data and the density structures of planetary nebulae
- Abundance Discrepancy Factors in high density planetary nebulae
- Compact planetary nebulae MaC 2-1 and Sp 4-1: Photoionization models and dust characteristics
- Planetary nebulae with Wolf-Rayet-type central stars -- II. Dissecting the compact planetary nebula M2-31 with GTC MEGARA
- Chemical Abundances of Eight Highly Extincted Milky Way Planetary Nebulae
- A comparative study of O, Ne, Cl, and Ar in Hii regions and PNe of the Galactic disk: Temporal evolution of radial gradients?