On the use of the index N2 to derive the metallicity in metal-poor galaxie
arXiv:1410.2850 · doi:10.1088/0004-637X/797/2/81
Abstract
The N2 index ([N II]6584/Ha) is used to determine emission line galaxy metallicities at all redshifts, including high redshift, where galaxies tend to be metal-poor. The initial aim of the work was to improve the calibrations used to infer oxygen abundance from N2 employing updated low-metallicity galaxy databases. We compare N2 and the metallicity determined using the direct method for the set of extremely metal-poor galaxies compiled by Morales-Luis et al. (2011). To our surprise, the oxygen abundance presents a tendency to be constant with N2, with a very large scatter. Consequently, we find that the existing N2 calibrators overstimate the oxygen abundance for most low metallicity galaxies, and then they can be used only to set upper limits to the true metallicity in low-metallicity galaxies. An explicit expression for this limit is given. In addition, we try to explain the observed scatter using photoionization models. It is mostly due to the different evolutionary state of the HII regions producing the emission lines, but it also arises due to differences of N/O among the galaxies.
Accepted for publication in ApJ. 7 pages, 5 figures
References in corpus (3)
Cited by in corpus (6)
- Photoionization Models for the Semi-Forbidden C III] 1909 Emission in Star-Forming Galaxies
- Chemical abundances of Seyfert 2 AGNs II. N2 metallicity calibration based on SDSS
- Extreme Emission-Line Galaxies in SDSS. I. Empirical and model-based calibrations of chemical abundances
- Inverted metallicity gradients in two Virgo cluster star-forming dwarf galaxies: evidence of recent merging?
- New calibrations for estimating the N/O ratio in HII regions
- UM462, a local green pea galaxy analogue under the MUSE magnifying glass