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  OH absorption in the first quadrant of the Milky Way as seen by THOR

Rugel, M. R., Beuther, H., Bihr, S., Wang, Y., Ott, J., Brunthaler, A., et al. (2018). OH absorption in the first quadrant of the Milky Way as seen by THOR. Astronomy and Astrophysics, 618.

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Rugel, M. R.1, Author
Beuther, H.1, Author
Bihr, S.1, Author
Wang, Y.1, Author
Ott, J.1, Author
Brunthaler, A.1, Author
Walsh, A.1, Author
Glover, S. C. O.1, Author
Goldsmith, P. F.1, Author
Anderson, L. D.1, Author
Schneider, N.1, Author
Menten, K. M.1, Author
Ragan, S. E.1, Author
Urquhart, J. S.1, Author
Klessen, R. S.1, Author
Soler, J. D.1, Author
Roy, N.1, Author
Kainulainen, J.1, Author
Henning, T.1, Author
Bigiel, F.1, Author
Smith, R. J.1, AuthorWyrowski, F.1, AuthorLongmore, S. N.1, Author more..
Affiliations:
1Max Planck Institute for Astronomy, Max Planck Society and Cooperation Partners, ou_2421692              

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Free keywords: ISM: clouds surveys molecular data radio lines: ISM ISM: abundances instrumentation: interferometers Astrophysics - Astrophysics of Galaxies
 Abstract: Context. The hydroxyl radical (OH) is present in the diffuse molecular and partially atomic phases of the interstellar medium (ISM), but its abundance relative to hydrogen is not clear.
Aims: We aim to evaluate the abundance of OH with respect to molecular hydrogen using OH absorption against cm-continuum sources over the first Galactic quadrant.
Methods: This OH study is part of the H I/OH/Recombination line survey of the inner Milky Way (THOR). THOR is a Karl G. Jansky Very Large Array (VLA) large program of atomic, molecular and ionized gas in the range 15° ≤ l ≤ 67° and |b|≤ 1°. It is the highest-resolution unbiased OH absorption survey to date towards this region. We combine the optical depths derived from these observations with literature 13CO(1-0) and H I observations to determine the OH abundance.
Results: We detect absorption in the 1665 and 1667 MHz transitions, that is, the "main" hyperfine structure lines, for continuum sources stronger than Fcont ≥ 0.1 Jy beam-1. OH absorption is found against approximately 15% of these continuum sources with increasing fractions for stronger sources. Most of the absorption occurs in molecular clouds that are associated with Galactic H II regions. We find OH and 13CO gas to have similar kinematic properties. The data indicate that the OH abundance decreases with increasing hydrogen column density. The derived OH abundance with respect to the total hydrogen nuclei column density (atomic and molecular phase) is in agreement with a constant abundance for AV < 10-20. Towards the lowest column densities, we find sources that exhibit OH absorption but no 13CO emission, indicating that OH is a well suited tracer of the low column density molecular gas. We also present spatially resolved OH absorption towards the prominent extended H II-region W43.
Conclusions: The unbiased nature of the THOR survey opens a new window onto the gas properties of the interstellar medium. The characterization of the OH abundance over a large range of hydrogen gas column densities contributes to the understanding of OH as a molecular gas tracer and provides a starting point for future investigations. This project is based on observations made with the VLA telescope under the program IDs: 12A-161, 13A-120, 14B-148. The observations were conducted as part of the THOR survey (the H I, OH, Recombination line survey of the Milky Way; <A href="http://www.mpia.de/thor/">http://www.mpia.de/thor/</A>).

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 Dates: 2018
 Publication Status: Issued
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Title: Astronomy and Astrophysics
Source Genre: Journal
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Pages: - Volume / Issue: 618 Sequence Number: - Start / End Page: - Identifier: -