Carbon Abundances in Compact Galactic Planetary Nebulae: An Ultraviolet spectroscopic study with the Space Telescope Imaging Spectrograph (STIS)
arXiv:2203.05636 · doi:10.3847/1538-4357/ac5d50
Abstract
We surveyed a sample of compact Galactic planetary nebulae (PNe) with the Space Telescope Imaging Spectrograph on the Hubble Space Telescope (HST/STIS) to determine their gas-phase carbon abundances. Carbon abundances in PNe constrain the nature of their asymptotic giant branch (AGB) progenitors, as well as cosmic recycling. We measured carbon abundances, or limits thereof, of 11 compact Galactic PNe, notably increasing the sample of Galactic PNe whose carbon abundance based on HST ultraviolet spectra is available. Dust content of most targets has been studied elsewhere from Spitzer spectroscopy; given the compact nature of the nebulae, both UV and IR spectra can be directly compared to study gas- and dust-phase carbon. We found that carbon-poor (C/O<1) compact Galactic PNe have oxygen-rich dust type (ORD), while their carbon-enhanced counterparts (C/O>1) have carbon-rich dust (CRD), confirming the correlation between gas- and dust-phase carbon content which was known for Magellanic Cloud PNe. Based on models of expected final yields from AGB evolution we interpret the majority of the carbon-poor PNe in this study as the progeny of ~1.1-1.2 M stars that experienced some extra-mixing on the red giant branch (RGB), they went through the AGB but did not go through the carbon star phase. Most PNe in this group have bipolar morphology, possibly due to the presence of a sub-solar companion. Carbon-enhanced PNe in our sample could be the progeny of stars in the ~1.5-2.5 M range, depending on their original metallicity.
The Astrophysical Journal, in press
References in corpus (19)
- 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
- Formation of fullerenes in H-containing Planetary Nebulae
- Isolated vs. Common Envelope Dynamos in Planetary Nebula Progenitors
- (Sub)stellar companions shape the winds of evolved stars
- Spitzer Infrared Spectrograph Observations of Magellanic Cloud Planetary Nebulae: the nature of dust in low metallicity circumstellar ejecta
- Planetary Nebula Abundances and Morphology: Probing the Chemical Evolution of the Milky Way
- Elemental abundances of Galactic bulge planetary nebulae from optical recombination lines
- The mixed chemistry phenomenon in Galactic Bulge PNe
- Chemical abundances in Galactic planetary nebulae with Spitzer spectra
- 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
- AGB dust and gas ejecta in extremely metal-poor environments
- Carbon abundance in Small Magellanic Cloud planetary nebulae through Advanced Camera for Surveys prism spectroscopy: constraining stellar evolution at low metallicity
- The population of Galactic planetary nebulae: a study of distance scales and central stars based on the second GAIA release
- Co-spatial Long-slit UV/Optical Spectra of Ten Galactic Planetary Nebulae with HST/STIS I. Description of the Observations, Global Emission-line Measurements, and CNO Abundances
- Compact Galactic Planetary Nebulae: A HST/WFC3 Morphological Catalog, and a Study of their Role in the Galaxy
- A Multiwavelength Analysis of the Halo Planetary Nebula DdDm-1