High-resolution absorption spectroscopy of the OH 2Pi 3/2 ground state line
arXiv:1203.1744 · doi:10.1051/0004-6361/201218915
Abstract
The chemical composition of the interstellar medium is determined by gas phase chemistry, assisted by grain surface reactions, and by shock chemistry. The aim of this study is to measure the abundance of the hydroxyl radical (OH) in diffuse spiral arm clouds as a contribution to our understanding of the underlying network of chemical reactions. Owing to their high critical density, the ground states of light hydrides provide a tool to directly estimate column densities by means of absorption spectroscopy against bright background sources. We observed onboard the SOFIA observatory the 2Pi3/2, J = 5/2 3/2 2.5 THz line of ground-state OH in the diffuse clouds of the Carina-Sagittarius spiral arm. OH column densities in the spiral arm clouds along the sightlines to W49N, W51 and G34.26+0.15 were found to be of the order of 10^14 cm^-2, which corresponds to a fractional abundance of 10^-7 to 10^-8, which is comparable to that of H_2O. The absorption spectra of both species have similar velocity components, and the ratio of the derived H_2O to OH column densities ranges from 0.3 to 1.0. In W49N we also detected the corresponding line of ^18OH.
References in corpus (6)
- Early Science with SOFIA, the Stratospheric Observatory for Infrared Astronomy
- GREAT: the SOFIA high-frequency heterodyne instrument
- High-resolution wide-band Fast Fourier Transform spectrometers
- Models of turbulent dissipation regions in the diffuse interstellar medium
- Comparative study of CH+ and SH+ absorption lines observed towards distant star-forming regions
- GREAT/SOFIA atmospheric calibration
Cited by in corpus (12)
- Interstellar water chemistry: from laboratory to observations
- Discovery of interstellar mercapto radicals (SH) with the GREAT instrument on SOFIA
- OH far-infrared emission from low- and intermediate-mass protostars surveyed with Herschel-PACS
- Far-infrared study of tracers of oxygen chemistry in diffuse clouds
- OH 18 cm Transition as a Thermometer for Molecular Clouds
- The ortho-to-para ratio of water in interstellar clouds
- OH absorption in the first quadrant of the Milky Way as seen by THOR
- SOFIA observations of far-infrared hydroxyl emission toward classical ultracompact HII/OH maser regions
- The Effect of Far-infrared Radiation on the Hyperfine Anomaly of the OH 18 cm Transition
- SOFIA/GREAT observations of OD and OH rotational lines towards high-mass star forming regions
- Temperature Structure of the Pipe Nebula Studied by the Intensity Anomaly of the OH 18 cm
- Hydrogen in diffuse molecular clouds in the Milky Way: Atomic column densities and molecular fraction along prominent lines of sight