The MaGICC volume: reproducing statistical properties of high redshift galaxies
Abstract
We present a cosmological hydrodynamical simulation of a representative volume of the Universe, as part of the Making Galaxies in a Cosmological Context (MaGICC) project. MaGICC uses a thermal implementation for supernova and early stellar feedback. This work tests the feedback model at lower resolution across a range of galaxy masses, morphologies and merger histories. The simulated sample compares well with observations of high redshift galaxies () including the stellar mass - halo mass ( ) relation, the Galaxy Stellar Mass Function (GSMF) at low masses ( ) and the number density evolution of low mass galaxies. The poor match of and the GSMF at high masses ( ) indicates supernova feedback is insufficient to limit star formation in these haloes. At , our model produces too many stars in massive galaxies and slightly underpredicts the stellar mass around mass galaxy. Altogether our results suggest that early stellar feedback, in conjunction with supernovae feedback, plays a major role in regulating the properties of low mass galaxies at high redshift.
Keywords
Cite
@article{arxiv.1302.2618,
title = {The MaGICC volume: reproducing statistical properties of high redshift galaxies},
author = {Rahul Kannan and Greg S. Stinson and Andrea V. Macciò and Chris Brook and Simone M. Weinmann and James Wadsley and H. M. P. Couchman},
journal= {arXiv preprint arXiv:1302.2618},
year = {2013}
}
Comments
Simulation extended to z=0, conclusions unchanged. Accepted for publication in MNRAS