Hostname: page-component-77c89778f8-vsgnj Total loading time: 0 Render date: 2024-07-18T04:33:04.437Z Has data issue: false hasContentIssue false

Millimeter-wave observations of diffuse clouds

Published online by Cambridge University Press:  25 May 2016

R. Lucas
Affiliation:
IRAM, Domaine Universitaire de Grenoble, 38406 St Martin D'Hérès, France
H. S. Liszt
Affiliation:
NRAO, Charlottesville, VA 22903, USA

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

Using the IRAM instruments (interferometer on Plateau de Bure and 30-m telescope on Pico Veleta) we have made numerous observations of molecular absorption lines in front of extragalactic millimeter wavelength radio sources. Observations of HCO+, CO and OH show that the lines of sight studied in this way sample the outer edges of molecular clouds or the diffuse clouds with highest column densities. Collisional excitation of the rotational levels is not significant in this density range for most molecular species, and accurate column densities may be derived by assuming radiative equilibrium with the cosmic microwave background. Using this technique we have measured column densities of CO, HCO+, H2CO, CN, HCN, HNC, CS, SO, H2S, C2H, and C3H2 in several lines of sight, intersecting about 20 individual clouds with CO column densities in the range 2 1014 to ∼ 1016 cm−2. These results confirm that complex molecules achieve dark-cloud abundances at low extinctions, either by formation in the gas phase or on grains.

Type
Diffuse and Translucent Clouds
Copyright
Copyright © Kluwer 1997 

References

Cox, P., Güsten, R., Henkel, C. 1988, A&A 206, 108.Google Scholar
Encrenaz, P.J., Combes, F., Lucas, R., Stark, A.A., Linke, R.A., Wilson, R.W., 1980, A&A 88, L1.Google Scholar
Falgarone, E., Pineau des Forêts, G., Roueff, E. 1995, A&A 300, 870.Google Scholar
Federman, S.R., Danks, A.C., Lambert, D.L. 1984, ApJ 287, 219.CrossRefGoogle Scholar
Federman, S.R., Williams, D. A. 1996, MNRAS, 279, L41.CrossRefGoogle Scholar
Gérin, M., Falgarone, E., Joulain, K., Kopp, M., Le Bourlot, J., Pineau des Forêts, G., Roueff, E., Schilke, P. 1996, A&A, in press.Google Scholar
Greaves, J.S., Glenn, J.H., Ohishi, M., Hasegawa, T., Sunada, K. 1992, A&A 260, 381.Google Scholar
Hogerheijde, M.R., de Geus, E.J., Spaans, M., van Langevelde, H.J., van Dishoeck, E.F. 1995, ApJ 441, L93.CrossRefGoogle Scholar
Le Bourlot, J., Pineau des Forêts, G., Roueff, E. 1995, A&A 297, 251.Google Scholar
Liszt, H.S., Lucas, R. 1994, ApJ 431, L131.CrossRefGoogle Scholar
Liszt, H.S., Lucas, R. 1994, A&A 299, 847.Google Scholar
Liszt, H.S., Lucas, R. 1995, A&A 294, 811.Google Scholar
Liszt, H.S., Lucas, R. 1996, A&A 314, 917.Google Scholar
Lucas, R., Liszt, H.S. 1993, A&A 276, L33.Google Scholar
Lucas, R., Liszt, H.S. 1994, A&A 282, L5.Google Scholar
Lucas, R., Liszt, H.S. 1996, A&A 307, 237.Google Scholar
Pineau des Forêts, G., Roueff, E., Schilke, P., Flower, D.R. 1993, MNRAS 262, 915.CrossRefGoogle Scholar
Spaans, M., 1995, , .Google Scholar
Tieftrunk, A., Pineau des Forêts, G., Schilke, P., Walmsley, C.M. 1994, A&A 289, 579.Google Scholar
Turner, B. E. 1996, ApJ 468, 694.CrossRefGoogle Scholar
van Dishoeck, E.F., Black, J.H. 1986, ApJS 62, 109.CrossRefGoogle Scholar
Watson, W. D., Anicich, V., Huntress, W. T. 1976, ApJ 205, L165.CrossRefGoogle Scholar