How well is angular momentum accretion modelled in semi-analytic galaxy formation models?
arXiv:2108.11531 · doi:10.1093/mnras/stab2454
Abstract
Gas cooling and accretion in haloes delivers mass and angular momentum onto galaxies. In this work, we investigate the accuracy of the modelling of this important process in several different semi-analytic (SA) galaxy formation models (GALFORM, L-GALAXIES and MORGANA) through comparisons with a hydrodynamical simulation performed with the moving-mesh code AREPO. Both SA models and the simulation were run without any feedback or metal enrichment, in order to focus on the cooling and accretion process. All of the SA models considered here assume that gas cools from a spherical halo. We found that the assumption that the gas conserves its angular momentum when moving from the virial radius, , to the central region of the halo, , is approximately consistent with the results from our simulation, in which gas typically retains of its angular momentum during this process. We also found that, compared to the simulation, the MORGANA model tends to overestimate the mean specific angular momentum of cooled-down gas, the L-GALAXIES model also tends to overestimate this in low-redshift massive haloes, while the two older GALFORM models tend to underestimate the angular momentum. In general, the predictions of the new GALFORM cooling model developed by Hou et al. agree the best with the simulation.
Accepted for publication on MNRAS
References in corpus (13)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- A primer on hierarchical galaxy formation: the semi-analytical approach
- The spin and shape of dark matter haloes in the Millennium simulation of a LambdaCDM universe
- Moving mesh cosmology: tracing cosmological gas accretion
- Four phases of angular-momentum buildup in high-z galaxies: from cosmic-web streams through an extended ring to disc and bulge
- The MORGANA model for the rise of galaxies and active nuclei
- Building disc structure and galaxy properties through angular momentum: The DARK SAGE semi-analytic model
- Accretion, feedback and galaxy bimodality: a comparison of the GalICS semi-analytic model and cosmological SPH simulations
- How to get cool in the heat: comparing analytic models of hot, cold, and cooling gas in haloes and galaxies with EAGLE
- How does gas cool in DM halos?
- A semi-analytic model comparison: testing cooling models against hydrodynamical simulations
- A new gas cooling model for semi-analytical galaxy formation models