PDR Model Mapping of Physical Conditions via Spitzer/IRS Spectroscopy of H2: Theoretical Success toward NGC 2023-South
arXiv:1110.4614 · doi:10.1088/0004-637X/741/1/45
Abstract
We use the IRS on Spitzer to observe the southern part of the reflection nebula NGC 2023, including the Southern Ridge, which is a photodissociation region par excellence excited by HD 37903. Five pure-rotational H2 emission lines are detected and mapped over and around the Southern Ridge in order to compare with predicted level column densities from theoretical PDR models. We find very good agreement between PDR model predictions and emission line intensities and ratios measured with Spitzer, leading us to conclude that grain photoelectric heating sufficiently warms the gas to produce the observed H2 line emission via collisional excitation. On the Southern Ridge, we infer a hydrogen nucleus density n_H approx 2x10^5 cm^-3 and radiation field strength χ approx 10^4 relative to the local Galactic interstellar radiation field. This high value for χ independently predicts a distance toward HD 37903 of 300 pc, and is consistent with the most recent HIPPARCOS results. Over the map we find that both n_H and χ vary by a factor of sim 3. Such 2-D variations provide clues about the underlying 3-D structure of the Southern Ridge field, which appears to be the tip of a molecular cloud. We also map variations in excitation temperature and the ortho-to-para ratio, the latter attaining values of sim 1.5---2.0 on the Southern Ridge, and find that PDR modeling can readily reproduce observed ortho-to-para ratios that are < 3 for rotational excitation dominated by collisional processes. Last, the stars Sellgren C and G are discovered to be resolved on archival HST images into two point sources each, with separations of lesssim 0.5".
16 pages, 13 figures, to be published in 2011 Nov 1 issue of ApJ
References in corpus (12)
- The distance to the Orion Nebula
- Variations of the Mid-IR Aromatic Features Inside and Among Galaxies
- Spectral Mapping Reconstruction of Extended Sources
- A Parallactic Distance of 389 +24/-21 parsecs to the Orion Nebula Cluster from Very Long Baseline Array Observations
- Spitzer observations of HH54 and HH7-11: mapping the H2 ortho-to-para ratio in shocked molecular gas
- Excitation of H in photodissociation regions as seen by Spitzer
- Dynamical parallax of sigma Ori AB: mass, distance and age
- Spitzer Mapping of PAHs and H2 in Photodissociation Regions
- Spatially Resolved Spitzer-IRS Spectroscopy of the Central Region of M82
- Deeply embedded objects and shocked molecular hydrogen: The environment of the FU Orionis stars RNO 1B/1C
- The origin of the [C II] emission in the S140 PDRs - new insights from HIFI
- Si and Fe depletion in Galactic star-forming regions observed by the Spitzer Space Telescope
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- A Simple and Accurate Network for Hydrogen and Carbon Chemistry in the ISM
- SHINING, A Survey of Far Infrared Lines in Nearby Galaxies. II: Line-Deficit Models, AGN impact, [CII]-SFR Scaling Relations, and Mass-Metallicity Relation in (U)LIRGS
- The PAH emission characteristics of the reflection nebula NGC2023
- PDRs4All III: JWST's NIR spectroscopic view of the Orion Bar
- PDRs4All: A JWST Early Release Science Program on radiative feedback from massive stars
- Analytic HI-to-H2 Photodissociation Transition Profiles
- The 15-20 um emission in the reflection nebula NGC2023
- PDRs4All II: JWST's NIR and MIR imaging view of the Orion Nebula
- The PhotoDissociation Region Toolbox: Software and Models for Astrophysical Analysis
- Efficient ortho-para conversion of H2 on interstellar grain surfaces
- C in Photodissociation Regions
- Polycyclic Aromatic Hydrocarbon emission in Spitzer/IRS maps I: Catalog and simple diagnostics
- Probing the Ionization States of Polycyclic Aromatic Hydrocarbons via the 15-20 μm Emission Bands
- A Near-infrared Survey of UV-excited Molecular Hydrogen in Photodissociation Regions
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- A Principal Component Analysis of polycyclic aromatic hydrocarbon emission in NGC 2023
- High angular resolution near-IR view of the Orion Bar revealed by Keck/NIRC2
- High Spectral and Spatial Resolution Observations of the PDR Emission in the NGC2023 Reflection Nebula with SOFIA and APEX
- Fluorescent H_2 Emission Lines from the Reflection Nebula NGC 7023 Observed with IGRINS
- Polycyclic Aromatic Hydrocarbon emission model in photodissociation regions I: Application to the 3.3, 6.2, and 11.2 m bands
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- Herschel PACS and SPIRE spectroscopy of the Photodissociation Regions associated with S 106 and IRAS 23133+6050
- PDR Model Mapping of Obscured H2 Emission and the Line-of-Sight Structure of M17-SW
- Neural network-based emulation of interstellar medium models
- Measurements of Ortho-to-para Nuclear Spin Conversion of H2 on Low-temperature Carbonaceous Grain Analogues: Diamond-like Carbon and Graphite
- A Principal Component Analysis of polycyclic aromatic hydrocarbon emission in NGC 7023
- Mapping Synthetic Observations to Prestellar Core Models: An Interpretable Machine Learning Approach
- Beetroots: spatially-regularized Bayesian inference of physical parameter maps -- Application to Orion