The SAMI Galaxy Survey: understanding observations of large-scale outflows at low redshift with EAGLE simulations
Abstract
This work presents a study of galactic outflows driven by stellar feedback. We extract main sequence disc galaxies with stellar mass MM at redshift from the highest resolution cosmological simulation of the Evolution and Assembly of GaLaxies and their Environments (EAGLE) set. Synthetic gas rotation velocity and velocity dispersion () maps are created and compared to observations of disc galaxies obtained with the Sydney-AAO Multi-object Integral field spectrograph (SAMI), where -values greater than km s are most naturally explained by bipolar outflows powered by starburst activity. We find that the extension of the simulated edge-on (pixelated) velocity dispersion probability distribution depends on stellar mass and star formation rate surface density (), with low-Mlow- galaxies showing a narrow peak at low ( km s) and more active, high-Mhigh- galaxies reaching km s. Although supernova-driven galactic winds in the EAGLE simulations may not entrain enough gas with T K compared to observed galaxies, we find that gas temperature is a good proxy for the presence of outflows. There is a direct correlation between the thermal state of the gas and its state of motion as described by the -distribution. The following equivalence relations hold in EAGLE: low- peak disc of the galaxy gas with T K; high- tail galactic winds gas with T K.
Keywords
Cite
@article{arxiv.1709.01939,
title = {The SAMI Galaxy Survey: understanding observations of large-scale outflows at low redshift with EAGLE simulations},
author = {E. Tescari and L. Cortese and C. Power and J. S. B. Wyithe and I. -T. Ho and R. A. Crain and J. Bland-Hawthorn and S. M. Croom and L. J. Kewley and J. Schaye and R. G. Bower and T. Theuns and M. Schaller and L. Barnes and S. Brough and J. J. Bryant and M. Goodwin and M. L. P. Gunawardhana and J. S. Lawrence and S. K. Leslie and Á. R. López-Sánchez and N. P. F. Lorente and A. M. Medling and S. N. Richards and S. M. Sweet and C. Tonini},
journal= {arXiv preprint arXiv:1709.01939},
year = {2017}
}
Comments
18 pages, 12 figures, accepted for publication in MNRAS