The Arp 220 merger on kpc scales
arXiv:1205.5638 · doi:10.1088/0004-637X/754/1/58
Abstract
For the first time we study the Eastern nucleus in greater detail and search for the more extended emission in the molecular gas in different CO line transitions of the famous ULIRG Arp 220. Furthermore we present a model of the merger in Arp 220 on large scales with the help of the CO data and an optical and near-infrared composite HST image of the prototypical ULIRG. Using the Plateau de Bure Interferometer (PdBI) we obtained CO(2-1) and (1-0) data at wavelengths of 1 and 3 mm in 1994, 1996, 1997 and 2006 at different beam sizes and spatial resolutions. The simulations of the merger in Arp 220 were performed with the Identikit modeling tool. The model parameters that describe the galaxy merger best give a mass ratio of 1:2 and result in a merger of ~6x10^8 yrs. The low resolution CO(1-0) PdBI observations suggest that there are indications for emission ~10" towards the south, as well as to the north and to the west of the two nuclei.
accepted for publication in ApJ, 14 pages 10 figures
References in corpus (7)
- SMA Imaging of CO(3-2) Line and 860 micron Continuum of Arp 220 : Tracing the Spatial Distribution of Luminosity
- Black hole in the West Nucleus of Arp 220
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Cited by in corpus (7)
- Extreme dust disks in Arp 220 as revealed by ALMA
- Subarcsecond international LOFAR radio images of Arp 220 at 150 MHz: A kpc-scale star forming disk surrounding nuclei with shocked outflows
- MUSE view of Arp220: Kpc-scale multi-phase outflow and evidence for positive feedback
- X-ray emission from the nuclear region of Arp 220
- Sub-arcsecond imaging of the water emission in Arp 220
- PdBI U/LIRG Survey (PULS): Dense Molecular Gas in Arp 220 and NGC 6240
- Arp 220: A Post-Starburst Galaxy With Little Star Formation Outside of It's Nuclear Disks