The AGORA High-resolution Galaxy Simulations Comparison Project. VI. Similarities and Differences in the Circumgalactic Medium
Abstract
We analyze the circumgalactic medium (CGM) for eight commonly-used cosmological codes in the AGORA collaboration. The codes are calibrated to use identical initial conditions, cosmology, heating and cooling, and star formation thresholds, but each evolves with its own unique code architecture and stellar feedback implementation. Here, we analyze the results of these simulations in terms of the structure, composition, and phase dynamics of the CGM. We show properties such as metal distribution, ionization levels, and kinematics are effective tracers of the effects of the different code feedback and implementation methods, and as such they can be highly divergent between simulations. This is merely a fiducial set of models, against which we will in the future compare multiple feedback recipes for each code. Nevertheless, we find that the large parameter space these simulations establish can help disentangle the different variables that affect observable quantities in the CGM, e.g., showing that abundances for ions with higher ionization energy are more strongly determined by the simulation's metallicity, while abundances for ions with lower ionization energy are more strongly determined by the gas density and temperature.
Keywords
Cite
@article{arxiv.2402.05246,
title = {The AGORA High-resolution Galaxy Simulations Comparison Project. VI. Similarities and Differences in the Circumgalactic Medium},
author = {Clayton Strawn and Santi Roca-Fàbrega and Joel R. Primack and Ji-hoon Kim and Anna Genina and Loic Hausammann and Hyeonyong Kim and Alessandro Lupi and Kentaro Nagamine and Johnny W. Powell and Yves Revaz and Ikkoh Shimizu and Héctor Velázquez and Tom Abel and Daniel Ceverino and Bili Dong and Minyong Jung and Thomas R. Quinn and Eun-jin Shin and Kirk S. S. Barrow and Avishai Dekel and Boon Kiat Oh and Nir Mandelker and Romain Teyssier and Cameron Hummels and Soumily Maji and Antonio Man and Paul Mayerhofer and AGORA Collaboration},
journal= {arXiv preprint arXiv:2402.05246},
year = {2024}
}
Comments
32 pages, 17 figures. Published in ApJ