CH observations toward the Orion Bar
arXiv:1405.3903 · doi:10.1051/0004-6361/201424220
Abstract
CH is one of the first radicals to be detected in the interstellar medium. Its higher rotational transitions have recently become available with the Herschel Space Observatory. We aim to constrain the physical parameters of the CH emitting gas toward the Orion Bar. We analyse the CH line intensities measured toward the Orion Bar CO Peak and Herschel/HIFI maps of CH, CH, and HCO, and a NANTEN map of [CI]. We interpret the observed CH emission using radiative transfer and PDR models. Five rotational transitions of CH have been detected in the HIFI frequency range toward the CO peak. A single component rotational diagram gives a rotation temperature of ~64 K and a beam-averaged CH column density of 410 cm. The measured transitions cannot be explained by any single parameter model. According to a non-LTE model, most of the CH column density produces the lower- CH transitions and traces a warm ( ~ 100-150 K) and dense ((H)~10-10 cm) gas. A small fraction of the CH column density is required to reproduce the intensity of the highest- transitions (=9-8 and N=10-9) originating from a high density ((H)~510 cm) hot ( ~ 400 K) gas. The total beam-averaged CH column density in the model is 10 cm. Both the non-LTE radiative transfer model and a simple PDR model representing the Orion Bar with a plane-parallel slab of gas and dust suggest, that CH cannot be described by a single pressure component, unlike the reactive ion CH, which was previously analysed toward the Orion Bar CO peak. The physical parameters traced by the higher rotational transitions (=6-5,...,10-9) of CH may be consistent with the edges of dense clumps exposed to UV radiation near the ionization front of the Orion Bar.
Proposed for acceptance in A&A, abstract abridged
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