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  • 标题:Structure of photodissociation fronts in star-forming regions revealed by Herschel ⋆ observations of high-J CO emission lines
  • 本地全文:下载
  • 作者:C. Joblin ; E. Bron ; C. Pinto
  • 期刊名称:Astronomy & Astrophysics
  • 印刷版ISSN:0004-6361
  • 电子版ISSN:1432-0746
  • 出版年度:2018
  • 卷号:615
  • DOI:10.1051/0004-6361/201832611
  • 语种:English
  • 出版社:EDP Sciences
  • 摘要:Context. In bright photodissociation regions (PDR) associated with massive star formation, the presence of dense “clumps” that are immersed in a less dense interclump medium is often proposed to explain the difficulty of models to account for the observed gas emission in high-excitation lines.Aims. We aim to present a comprehensive view of the modelling of the CO rotational ladder in PDRs, including the high-J lines that trace warm molecular gas at PDR interfaces.Methods. We observed the12CO and13CO ladders in two prototypical PDRs, the Orion Bar and NGC 7023 NW using the instruments onboardHerschel. We also considered line emission from key species in the gas cooling of PDRs (C+, O, and H2) and other tracers of PDR edges such as OH and CH+. All the intensities are collected fromHerschelobservations, the literature and theSpitzerarchive and were analysed using the Meudon PDR code.Results. A grid of models was run to explore the parameter space of only two parameters: thermal gas pressure and a global scaling factor that corrects for approximations in the assumed geometry. We conclude that the emission in the high-J CO lines, which were observed up toJup= 23 in the Orion Bar (Jup= 19 in NGC 7023), can only originate from small structures with typical thicknesses of a few 10−3pc and at high thermal pressures (Pth~ 108K cm−3).Conclusions. Compiling data from the literature, we find that the gas thermal pressure increases with the intensity of the UV radiation field given byG0, following a trend in line with recent simulations of the photoevaporation of illuminated edges of molecular clouds. This relation can help to rationalise the analysis of high-J CO emission in massive star formation and provides an observational constraint for models which study stellar feedback on molecular clouds.
  • 关键词:enphoton-dominated regionISM: individual objects: Orion BarISM: individual objects: NGC 7023ISM: lines and bandssubmillimeter: ISMmolecular processes
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