A dynamical model for the Taffy galaxies UGC 12914/5
arXiv:1209.6052 · doi:10.1051/0004-6361/201219668
Abstract
The spectacular head-on collision of the two gas-rich galaxies of the Taffy system, UGC 12914/15, gives us a unique opportunity to study the consequences of a direct ISM-ISM collision. To interpret existing multi-wavelength observations, we made dynamical simulations of the Taffy system including a sticky particle component. To compare simulation snapshots to HI and CO observations, we assume that the molecular fraction of the gas depends on the square root of the gas volume density. For the comparison of our simulations with observations of polarized radio continuum emission, we calculated the evolution of the 3D large-scale magnetic field for our simulations. The induction equations including the time-dependent gas-velocity fields from the dynamical model were solved for this purpose. Our simulations reproduce the stellar distribution of the primary galaxy, UGC 12914, the prominent HI and CO gas bridge, the offset between the CO and HI emission in the bridge, the bridge isovelocity vectors parallel to the bridge, the HI double-line profiles in the bridge region, the large line-widths (~200 km/s) in the bridge region, the high field strength of the bridge large-scale regular magnetic field, the projected magnetic field vectors parallel to the bridge and the strong total power radio continuum emission from the bridge. The stellar distribution of the secondary model galaxy is more perturbed than observed. The observed distortion of the HI envelope of the Taffy system is not reproduced by our simulations which use initially symmetric gas disks. The model allows us to define the bridge region in three dimensions. We estimate the total bridge gas mass (HI, warm and cold H2) to be 5 to 6 10^9 M_sun, with a molecular fraction M_H2/M_HI of about unity (abrigded).
30 pages, 27 figures, accepted for publication in A&A
References in corpus (9)
- Powerful High Velocity-Dispersion Molecular Hydrogen Associated with an Intergalactic Shock Wave in Stephan's Quintet
- Ram-pressure stripped molecular gas in the Virgo spiral galaxy NGC 4522
- Turbulent molecular gas and star formation in the shocked intergalactic medium of Stephan's Quintet
- The influence of the cluster environment on the star formation efficiency of 12 Virgo spiral galaxies
- Pre-peak ram pressure stripping in the Virgo cluster spiral galaxy NGC 4501
- Gas and Dust in the Taffy Galaxies: Ugc12914/15
- Detection of Powerful Mid-IR H2 Emission in the Bridge between the Taffy Galaxies
- NGC 4654: polarized radio continuum emission as a diagnostic tool for a galaxy--cluster interaction
- Molecular gas and dust in Arp 94: The formation of a recycled galaxy in an interacting system
Cited by in corpus (18)
- Nuclear coups: dynamics of black holes in galaxy mergers
- Gas compression and stellar feedback in the tidally interacting and ram-pressure stripped Virgo spiral galaxy NGC 4654
- A Virgo Environmental Survey Tracing Ionised Gas Emission (VESTIGE). VIII. Modeling ram pressure stripping of diffuse gas in the Virgo cluster spiral galaxy NGC 4330
- X-ray Emission from the Taffy (VV254) Galaxies and Bridge
- Herschel Spectroscopy of the Taffy Galaxies (UGC 12914/12915 = VV 254): Enhanced [C II] emission in the collisionally-formed bridge
- Enhancement of magnetic fields arising from galactic encounters
- Evidence for shock-heated gas in the Taffy Galaxies and Bridge from Optical Emission-Line IFU spectroscopy
- The quenching of star formation in accretion-driven clumpy turbulent tori of active galactic nuclei
- Dynamics and Shocks from H Emission of Nearby Galaxy Mergers
- Tidal bridge and tidal dwarf candidates in the interacting system Arp194
- Models of Multi-component Splash Bridges in Face-on Galaxy Disc Collisions
- Low star formation efficiency due to turbulent adiabatic compression in the Taffy bridge
- The CO emission in the Taffy Galaxies (UGC 12914/5) at 60pc resolution-I: The battle for star formation in the turbulent Taffy Bridge
- Seeing the forest and the trees: a radio investigation of the ULIRG Mrk 273
- Star Formation in Splash Bridges
- ESO 137-001 -- a jellyfish galaxy model
- A large-scale, regular intergalactic magnetic field associated with Stephan's Quintet?
- Gas flows in galaxy mergers: supersonic turbulence in bridges, accretion from the circumgalactic medium, and metallicity dilution