Ionization correction factors and dust depletion patterns in giant HII regions
arXiv:2105.08891 · doi:10.1093/mnras/stab1467
Abstract
We provide new ionization correction factors (ICFs) for carbon, nitrogen, neon, sulfur, chlorine, and argon in giant H II regions. The ICFs were computed using the most representative photoionization models from a large initial grid. The models were selected using an observational sample of 985 giant H II regions (GHR) in spiral galaxies and blue compact galaxies (BCG). The observational sample was also used to assign a weight to each model describing how well it agrees with observations in the [O III]/Hbeta versus [N II]/Halpha diagram. In addition to the ICFs we provide, for the first time, analytical expressions for their formal uncertainties. We use our ICFs to compute the abundances of nitrogen, neon, sulfur, and argon in our samples. Our abundances are robust within the adopted framework, but may require revision in the case of important changes in atomic data or in the spectral energy distribution of the ionizing radiation in H II regions. Considering the abundance patterns we obtained for the BCG sample (abundances for the GHR sample are less reliable) we find that oxygen is depleted into dust grains at a rate increasing with metallicity and reaching 0.12 dex at solar abundances. The discussion of possible depletion of sulfur and argon requires considering recent Type Ia Supernova yields, which are still uncertain.
References in corpus (16)
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- PyNeb: a new tool for analyzing emission lines. I. Code description and validation of results
- Extragalactic chemical abundances: do HII regions and young stars tell the same story? The case of the spiral galaxy NGC 300
- A cosmic abundance standard: chemical homogeneity of the solar neighbourhood and the ISM dust-phase composition
- Deriving model-based T-consistent chemical abundances in ionised gaseous nebulae
- The primordial abundance of 4He: a self-consistent empirical analysis of systematic effects in a large sample of low-metallicity HII regions
- The Chemical Evolution of Carbon, Nitrogen, and Oxygen in Metal-Poor Dwarf Galaxies
- Chemical evolution with rotating massive star yields II. A new assessment of the solar s- and r- process components
- Modelling the Pan-Spectral Energy Distribution of Starburst Galaxies: II. Control of the \HII Region Parameters
- Excitation properties of galaxies with the highest [OIII]/[OII] ratios: No evidence for massive escape of ionizing photons
- Neon and Argon optical emission lines in ionized gaseous nebulae: Implications and applications
- The Te[N II]-Te[O III] temperature relation in H II regions and the reliability of strong-line methods
- SDSS-IV MaNGA: Bar pattern speed estimates with the Tremaine-Weinberg method and their error sources
- Presolar Grains from Novae: Evidence from Neon and Helium Isotopes in Comet Dust Collections
- The ESO UVES Advanced Data Products Quasar Sample - IV. On the deficiency of Argon in DLA systems
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