Nitrogen hydrides in interstellar gas II. Analysis of Herschel/HIFI observations towards W49N and G10.6-0.4 (W31C)
arXiv:1208.3979 · doi:10.1051/0004-6361/201118686
Abstract
We have used the Herschel-HIFI instrument to observe interstellar nitrogen hydrides along the sight-lines towards W49N and G10.6-0.4 in order to elucidate the production pathways leading to nitrogen-bearing species in diffuse gas. All detections show absorption by foreground material over a wide range of velocities, as well as absorption associated directly with the hot-core source itself. As in the previously published observations towards G10.6-0.4, the NH, NH2 and NH3 spectra towards W49N show strikingly similar and non-saturated absorption features. We decompose the absorption of the foreground material towards W49N into different velocity components in order to investigate whether the relative abundances vary among the velocity components, and, in addition, we re-analyse the absorption lines towards G10.6-0.4 in the same manner. Abundances, with respect to molecular hydrogen, in each velocity component are estimated using CH. The analysis points to a co-existence of the nitrogen hydrides in diffuse or translucent interstellar gas with a high molecular fraction. Towards both sources, we find that NH is always at least as abundant as both o-NH2 and o-NH3, in sharp contrast to previous results for dark clouds. We find relatively constant N(NH)/N(o-NH3) and N(o-NH2)/N(o-NH3) ratios with mean values of 3.2 and 1.9 towards W49N, and 5.4 and 2.2 towards G10.6-0.4, respectively. The mean abundance of o-NH3 is ~2x10^-9 towards both sources. The nitrogen hydrides also show linear correlations with CN and HNC towards both sources, and looser correlations with CH. The upper limits on the NH+ abundance indicate column densities < 2 - 14 % of N(NH). Surprisingly low values of the ammonia ortho-to-para ratio are found in both sources, ~0.5 - 0.7 +- 0.1. This result cannot be explained by current models as we had expected to find a value of unity or higher.
35 pages, 74 figures
References in corpus (2)
Cited by in corpus (18)
- [CII] absorption and emission in the diffuse interstellar medium across the Galactic Plane
- Benchmarking spin-state chemistry in starless core models
- An ALMA Early Science survey of molecular absorption lines toward PKS1830-211 -- Analysis of the absorption profiles
- The ortho-to-para ratio of water in interstellar clouds
- Laboratory rotational ground state transitions of NHD and CF
- Upper limits to interstellar NH+ and para-NH2- abundances. Herschel-HIFI observations towards Sgr B2 (M) and G10.6-0.4 (W31C)
- Chemical significance of different temperature regimes for cosmic-ray-induced heating of whole interstellar grains
- The role of highly vibrationally excited H2 initiating the N chemistry: Quantum study and 3-sigma detection of NH emission in the Orion Bar PDR
- Detection of a dense clump in a filament interacting with W51e2
- The ortho-to-para ratio of HCl: Quasi-classical trajectory calculations and new simulations in light of new observations
- Dissociative recombination measurements of NH using an ion storage ring
- Highly structured turbulence in high-mass star formation: an evolved infrared dark cloud G35.20-0.74 N
- Modeling ionic reactions at interstellar temperatures: the case of NH2- + H2 <--> NH3 + H-
- The ortho-to-para ratio of interstellar NH: Quasi-classical trajectory calculations and new simulations
- Ammonia in the interstellar medium of a starbursting disc at z=2.6
- Odin observations of ammonia in the Sgr A +50 km/s Cloud and Circumnuclear Disk
- Spectral survey of the diffuse gas toward BL Lac in the Q band
- Hydrogen in diffuse molecular clouds in the Milky Way: Atomic column densities and molecular fraction along prominent lines of sight