The fate of the Antennae galaxies
arXiv:1709.00010 · doi:10.1093/mnras/sty060-
Abstract
We present a high-resolution smoothed particle hydrodynamics simulation of the Antennae galaxies (NGC 4038/4039) and follow the evolution Gyrs beyond the final coalescence. The simulation includes metallicity dependent cooling, star formation, and both stellar feedback and chemical enrichment. The simulated best-match Antennae reproduces well both the observed morphology and the off-nuclear starburst. We also produce for the first time a simulated two-dimensional metallicity map of the Antennae and find good agreement with the observed metallicity of off-nuclear stellar clusters, however the nuclear metallicities are overproduced by dex. Using the radiative transfer code SKIRT we produce multi-wavelength observations of both the Antennae and the merger remnant. The Gyr old remnant is well fitted with a Sérsic profile of , and with an -band effective radius of kpc and velocity dispersion of kms the remnant is located on the fundamental plane of early-type galaxies (ETGs). The initially blue Antennae remnant evolves onto the red sequence after Gyr of secular evolution. The remnant would be classified as a fast rotator, as the specific angular momentum evolves from to during its evolution. The remnant shows ordered rotation and a double peaked maximum in the mean 2D line-of-sight velocity. These kinematical features are relatively common among local ETGs and we specifically identify three local ETGs (NGC 3226, NGC 3379 and NGC 4494) in the ATLAS sample, whose photometric and kinematic properties most resemble the Antennae remnant.
27 pages, 18 figures, revised version accepted for publication in MNRAS
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