Analysis of two SMC HII Regions Considering Thermal Inhomogeneities: Implications for the Determinations of Extragalactic Chemical Abundances
arXiv:1111.2844 · doi:10.1088/0004-637X/746/2/115
Abstract
We present long slit spectrophotometry considering the presence of thermal inhomogeneities (t^2) of two HII regions in the Small Magellanic Cloud (SMC): NGC 456 and NGC 460. Physical conditions and chemical abundances were determined for three positions in NGC 456 and one position in NGC 460, first under the assumption of uniform temperature and then allowing for the possibility of thermal inhomogeneities. We determined t^2 values based on three different methods: i) by comparing the temperature derived using oxygen forbidden lines with the temperature derived using helium recombination lines, ii) by comparing the abundances derived from oxygen forbidden lines with those derived from oxygen recombination lines, and iii) by comparing the abundances derived from ultraviolet carbon forbidden lines with those derived from optical carbon recombination lines. The first two methods averaged t^2=0.067+-0.013 for NGC 456 and t^2=0.036+-0.027 for NGC 460. These values of t^2 imply that when gaseous abundances are determined with collisionally excited lines they are underestimated by a factor of nearly 2. From these objects and others in the literature, we find that in order to account for thermal inhomogeneities and dust depletion, the O/H ratio in low metallicity HII regions should be corrected by 0.25-0.45 dex depending on the thermal structure of the nebula, or by 0.35 dex if such information is not available.
Accepted for publication in The Astrophysical Journal. 41 pages in pre-print format. 3 figures
References in corpus (13)
- A cosmic abundance standard: chemical homogeneity of the solar neighbourhood and the ISM dust-phase composition
- Metallicities and Physical Conditions in Star-forming Galaxies at z~1.0-1.5
- Keck HIRES Spectroscopy of Extragalactic HII Regions: C and O Abundances from Recombination Lines
- On the abundance discrepancy problem in HII regions
- Properties of the ionized gas in HH202. II: Results from echelle spectrophotometry with UVES
- VLT spectroscopy of low-metallicity emission-line galaxies: abundance patterns and abundance discrepancies
- On the maximum value of the cosmic abundance of oxygen and the oxygen yield
- He~I Emission in the Orion Nebula and Implications for Primordial Helium Abundance
- Enrichment of the ISM by metal-rich droplets and the abundance bias in HII regions
- The L-sigma Relation of Local HII Galaxies
- The effects of spatially distributed ionisation sources on the temperature structure of HII region
- Properties of the ionized gas in HH202. I: Results from integral field spectroscopy with PMAS
- Chemical abundances in the protoplanetary disk LV2 (Orion) - II: High dispersion VLT observations and microjet properties
Cited by in corpus (24)
- New Strong Line Abundance Diagnostics for \HII Regions: Effects of -Distributed Electron Energies and New Atomic Data
- The Interstellar dust properties of nearby galaxies
- Resolving the electron temperature discrepancies in HII Regions and Planetary Nebulae: kappa-distributed electrons
- CHAOS III: Gas-Phase Abundances in NGC5457
- Nebular spectroscopy: A guide on H II regions and planetary nebulae
- "Counterpart" method for abundance determinations in HII regions
- Young stars and ionized nebulae in M83: comparing chemical abundances at high metallicity
- The Metallicities of Low Stellar Mass Galaxies and the Scatter in the Mass-Metallicity Relation
- Carbon and oxygen in HII regions of the Magellanic Clouds: abundance discrepancy and chemical evolution
- Determination of the primordial helium abundance based on NGC 346 an HII region of the Small Magellanic Cloud
- A Characteristic Mass Scale in the Mass-Metallicity Relation of Galaxies
- Temperature inhomogeneities cause the abundance discrepancy in H II regions
- Density biases and temperature relations for DESIRED HII regions
- Discrepancies between the [OIII] and [SIII] Temperatures in HII Regions
- The supernova remnant population of the Small Magellanic Cloud
- Calibrating Interstellar Abundances using SNR Radiative Shocks
- Chemical abundances in 7 metal-poor HII regions and a determination of the primordial helium abundance
- The Te[N II]-Te[O III] temperature relation in H II regions and the reliability of strong-line methods
- IFU spectroscopy of Southern Planetary Nebulae IV: A Physical Model for IC 418
- Carbon Abundances in Starburst Galaxies of the Local Universe
- A rare early-type star revealed in the Wing of the Small Magellanic Cloud
- A classification of HII regions based on Oxygen and Helium lines: The cases of TOL2146-391 and TOL0357-3915
- Gas-phase Fe/O and Fe/N abundances in Star-Forming Regions. Relations between nucleosynthesis, metallicity and dust
- Physical conditions and chemical abundances in PN M 2-36. Results from deep echelle observations