Spitzer reveals what's behind Orion's Bar
arXiv:1008.2736 · doi:10.1111/j.1365-2966.2010.17522.x
Abstract
We present Spitzer Space Telescope observations of 11 regions SE of the Bright Bar in the Orion Nebula, along a radial from the exciting star theta1OriC, extending from 2.6 to 12.1'. Our Cycle 5 programme obtained deep spectra with matching IRS short-high (SH) and long-high (LH) aperture grid patterns. Most previous IR missions observed only the inner few arcmin. Orion is the benchmark for studies of the ISM particularly for elemental abundances. Spitzer observations provide a unique perspective on the Ne and S abundances by virtue of observing the dominant ionization states of Ne (Ne+, Ne++) and S (S++, S3+) in Orion and H II regions in general. The Ne/H abundance ratio is especially well determined, with a value of (1.01+/-0.08)E-4. We obtained corresponding new ground-based spectra at CTIO. These optical data are used to estimate the electron temperature, electron density, optical extinction, and the S+/S++ ratio at each of our Spitzer positions. That permits an adjustment for the total gas-phase S abundance because no S+ line is observed by Spitzer. The gas-phase S/H abundance ratio is (7.68+/-0.30)E-6. The Ne/S abundance ratio may be determined even when the weaker hydrogen line, H(7-6) here, is not measured. The mean value, adjusted for the optical S+/S++ ratio, is Ne/S = 13.0+/-0.6. We derive the electron density versus distance from theta1OriC for [S III] and [S II]. Both distributions are for the most part decreasing with increasing distance. A dramatic find is the presence of high-ionization Ne++ all the way to the outer optical boundary ~12' from theta1OriC. This IR result is robust, whereas the optical evidence from observations of high-ionization species (e.g. O++) at the outer optical boundary suffers uncertainty because of scattering of emission from the much brighter inner Huygens Region.
60 pages, 16 figures, 10 tables. MNRAS accepted
References in corpus (11)
- The chemical composition of the Sun
- Nucleosynthesis and Remnants in Massive Stars of Solar Metallicity
- Spectral Mapping Reconstruction of Extended Sources
- Planetary nebulae abundances and stellar evolution
- Spitzer IRS Observations of the Galactic Center: Shocked Gas in the Radio Arc Bubble
- The neon content of nearby B-type stars and its implications for the solar model problem
- Deviations from He I Case B Recombination Theory and Extinction Corrections in the Orion Nebula
- Spectrophotometry of the Huygens Region of the Orion Nebula, the Extended Orion Nebula, and M~43; Scattered Light Systematically Distorts Conditions Derived from Emission-Lines
- Large Scale Flows from Orion-South
- Spitzer Observations of M83 and the Hot Star, H II Region Connection
- Are oxygen and neon enriched in PNe and is the current solar Ne/O abundance ratio underestimated?
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