4.7 Article

PDR MODEL MAPPING OF PHYSICAL CONDITIONS VIA SPITZER/IRS SPECTROSCOPY OF H2: THEORETICAL SUCCESS TOWARD NGC 2023-SOUTH

期刊

ASTROPHYSICAL JOURNAL
卷 741, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/741/1/45

关键词

infrared: ISM; ISM: clouds; ISM: individual objects (NGC 2023); ISM: molecules; photon-dominated region (PDR); stars: individual (HD 37903)

资金

  1. NASA through JPL/Caltech
  2. NSF [PHY-0552964]
  3. NASA [1407, NNG05G64G]

向作者/读者索取更多资源

We use the Infrared Spectrograph on Spitzer to observe the southern part of the reflection nebula NGC 2023, including the Southern Ridge, which is a photodissociation region (PDR) par excellence excited by HD 37903. Five pure-rotational H-2 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 H-2 line emission via collisional excitation. On the Southern Ridge, we infer a hydrogen nucleus density n(H) approximate to 2 x 10(5) cm(-3) and radiation field strength chi approximate to 10(4) relative to the local Galactic interstellar radiation field. This high value for chi 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 chi vary by a factor of similar to 3. Such two-dimensional variations provide clues about the underlying three-dimensional 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 similar to 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 Hubble Space Telescope images into two point sources each, with separations of less than or similar to 0.'' 5.

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