CHAOS I: Direct Chemical Abundances for HII Regions in NGC 628
arXiv:1501.02270 · doi:10.1088/0004-637X/806/1/16
Abstract
The CHemical Abundances of Spirals (CHAOS) project leverages the combined power of the Large Binocular Telescope (LBT) with the broad spectral range and sensitivity of the Multi Object Double Spectrograph (MODS) to measure "direct" abundances in large samples of HII regions in spiral galaxies. We present LBT MODS observations of 62 HII regions in the nearby NGC628. We measure one or more auroral lines ([OIII] 4363, [NII] 5755, [SIII] 6312, or [OII] 7320,7330) in a large number of HII regions (40). Comparing derived temperatures from multiple auroral line measurements, we find: a strong correlation between temperatures based on [SIII] and [NII]; and large discrepancies for some temperatures based on [OII] and [OIII]. These trends are consistent with other observations in the literature, yet, given the widespread use and acceptance of [OIII] as a temperature determinant, the magnitude of the T[OIII] discrepancies still came as a surprise. Based on these results, we conduct a uniform abundance analysis using the temperatures derived from [SIII] and [NII], and report the gas-phase abundance gradients for NGC628. Relative abundances of S/O, Ne/O, and Ar/O are constant across the galaxy, consistent with no systematic change in the upper IMF over the sampled range in metallicity. These alpha-element ratios, along with N/O, all show small dispersions consistent with no intrinsic dispersion (0.05) over 70% of the azimuthally averaged radius. We interpret these results as an indication that, at a given radius, the interstellar medium in NGC628 is chemically well-mixed. Unlike the nearly temperature-independent gradients, O/H abundances have a larger intrinsic dispersion of ~0.13 dex. We posit that this dispersion represents an upper limit to the true dispersion in O/H at a given radius and that some of that dispersion is due to systematic uncertainties arising from temperature measurements.
24 pages, 13 Figures, accepted to ApJ
References in corpus (13)
- The MAPPINGS III Library of Fast Radiative Shock Models
- Extragalactic chemical abundances: do HII regions and young stars tell the same story? The case of the spiral galaxy NGC 300
- Resolving the electron temperature discrepancies in HII Regions and Planetary Nebulae: kappa-distributed electrons
- Keck HIRES Spectroscopy of Extragalactic HII Regions: C and O Abundances from Recombination Lines
- The M33 Metallicity Project: Resolving the Abundance Gradient Discrepancies in M33
- The oxygen abundance in the inner HII regions of M101. Implications for the calibration of strong-line metallicity indicators
- Empirical strong-line oxygen abundance calibrations from galaxies with electron temperature measurements
- The temperature and ionization structure of the emitting gas in HII galaxies: Implications for the accuracy of abundance determinations
- On the Determination of N and O Abundances in Low Metallicity Systems
- Discrepancies between the [OIII] and [SIII] Temperatures in HII Regions
- Two-dimensional metallicity distribution of the ionized gas in NGC 628 and NGC 6946
- Oxygen and nitrogen abundances of HII regions in six spiral galaxies
- Testing the existence of non-Maxwellian electron distributions in H II regions after assessing atomic data accuracy
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