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BIMA Sub-arcsecond Carbon Monoxide Observations: Resolving the Inner kpc Region of the QSO I Zw 1

Published online by Cambridge University Press:  13 May 2016

Johannes Staguhn
Affiliation:
Dept. of Astronomy, University of Maryland, College Park, MD 20742, USA
Eva Schinnerer
Affiliation:
Dept. of Astronomy 104-24, California Institute of Technology, Pasadena, CA 91125, USA
Andreas Eckart
Affiliation:
I. Physikalisches Institut, Universität zu Köln, Zülpicher Straße 77, 50937 Köln, Germany

Abstract

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We present the first sub-kpc (∼ 0.7 ≈ 0.8 kpc) resolution 12CO(1–0) observations of the ISM in the host galaxy of the QSO I Zw 1 which were obtained with the BIMA mm-interferometer in its A configuration. The measurements, which are part of a multi-wavelength study of I Zw 1, will allow comparison of the ISM properties of a QSO host with those of nearby galaxies and place constraints on galaxy formation/evolution models. Our maps of the 12CO(1–0) line emission from the host galaxy of a QSO show a ring-like structure in the circumnuclear molecular gas distribution with a radius of about 900 pc. The presence of such a molecular gas ring was already predicted from earlier lower angular resolution PdBI observations (Schinnerer, Eckart, & Tacconi 1998). A first comparison of the BIMA data with new PdBI 12CO(2–1) observations with 0.9 angular resolution shows variations in the excitation conditions of the molecular gas in the innermost 3 comprising the nuclear region of I Zw 1.

Type
Molecules in External Galaxies
Copyright
Copyright © Astronomical Society of the Pacific 2001 

References

Condon, J.J., Hutchings, J.B., & Gower, A.C. 1985, AJ, 90, 1642.CrossRefGoogle Scholar
Eckart, A., van der Werf, P.P., Hofmann, R., & Harris, A.I. 1994, ApJ, 424, 627.CrossRefGoogle Scholar
Genzel, et al. 1995, ApJ, 444, 129.CrossRefGoogle Scholar
Holdaway, M.A., & Owens, F.N. 1993, ALMA Memo Series, 126).Google Scholar
Neugebauer, G., & Scoville, N., 1988, ApJ, 325, 74.Google Scholar
Norman, C. & Scoville, N. 1988, ApJ, 332, 124.CrossRefGoogle Scholar
Planesas, , Scoville, , & Myers, 1991 ApJ, 369, 364.CrossRefGoogle Scholar
Sanders, D.B., Soifer, B.T., Elias, J.H., Madore, B.F., Matthews, K., Rieke, G.H., Lebowsky, M.J., & Walker, C.E. 1988, ApJ, 325, 679.CrossRefGoogle Scholar
Schinnerer, E., Eckart, A., & Tacconi, L.J., 1998, ApJ, 500, 147.CrossRefGoogle Scholar
Welch, W.J., et al. 1996, PASP, 108, 93.CrossRefGoogle Scholar