The impact of spurious collisional heating on the morphological evolution of simulated galactic discs
arXiv:2208.07623 · doi:10.1093/mnras/stad055
Abstract
We use a suite of idealised N-body simulations to study the impact of spurious heating of star particles by dark matter particles on the kinematics and morphology of simulated galactic discs. We find that spurious collisional heating leads to a systematic increase of the azimuthal velocity dispersion () of stellar particles and a corresponding decrease in their mean azimuthal velocities (). The rate of heating is dictated primarily by the number of dark matter halo particles (or equivalently, by the dark matter particle mass at fixed halo mass) and by radial gradients in the local dark matter density along the disc; it is largely insensitive to the stellar particle mass. Galaxies within haloes resolved with fewer than dark matter particles are particularly susceptible to spurious morphological evolution, irrespective of the total halo mass (with even more particles required to prevent heating of the galactic centre). Collisional heating transforms galactic discs from flattened structures into rounder spheroidal systems, causing them to lose rotational support in the process. It also affects the locations of galaxies in standard scaling relations that link their various properties: at fixed stellar mass, it increases the sizes of galaxies, and reduces their mean stellar rotation velocities and specific angular momenta. Our results urge caution when extrapolating simulated galaxy scaling relations to low masses where spurious collisional effects can bias their normalisation, slope and scatter.
Minor changes to match MNRAS published version. 20 pages, 13 figures
References in corpus (14)
- Array Programming with NumPy
- 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
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- The SAURON project -- IX. A kinematic classification for early-type galaxies
- The Auriga Project: the properties and formation mechanisms of disc galaxies across cosmic time
- The Size Evolution of Star-forming and Quenched Galaxies in the IllustrisTNG simulation
- Feedback and the Structure of Simulated Galaxies at redshift z=2
- Angular momentum evolution of galaxies in EAGLE
- Age velocity dispersion relations and heating histories in disc galaxies
- Energy equipartition between stellar and dark matter particles in cosmological simulations results in spurious growth of galaxy sizes
- Size matters: abundance matching, galaxy sizes, and the Tully-Fisher relation in EAGLE
- Galactic angular momentum in the IllustrisTNG simulation -- I. Connection to morphology, halo spin, and black hole mass
- Formation of the Large Nearby Galaxies
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