Where Did the Outskirts Go? Outer Stellar Haloes as a Sensitive Probe of Supernova Feedback
arXiv:2103.09833 · doi:10.3847/1538-4357/ac92fe
Abstract
A recent comparison by Merritt et al. 2020 of simulated and observed Milky Way-mass galaxies has identified a significant tension between the outskirts ($r>20\kpc$) of the stellar halos in simulated and observed galaxies. Using observations from the Dragonfly telescope and simulated galaxies from the Illustris-TNG100 project, Merritt et al. 2020 finds that the outskirts of stellar halos in simulated galaxies have surface densities dex higher than observed galaxies. In this paper, we compare two suites of 15 simulated Milky Way-like galaxies, each drawn from the same initial conditions, simulated with the same hydrodynamical code, but with two different models for feedback from supernovae. We find that the MUGS simulations, which use an older ``delayed-cooling'' model for feedback, also produce too much stellar mass in the outskirts of the halo, with median surface densities well above observational constraints. The MUGS2 simulations, which instead use a new, physically-motivated ``superbubble'' model for stellar feedback, have dex lower outer stellar halo masses and surface densities. The MUGS2 simulations generally match both the median surface density profile as well as the scatter in stellar halo surface density profiles seen in observed stellar halos. We conclude that there is no ``missing outskirts'' problem in cosmological simulations, provided that supernova feedback is modelled in a way that allows it to efficiently regulate star formation in the low-mass progenitor environments of stellar halo outskirts.
15 pages, 10 figures. ApJ published version
References in corpus (18)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Forty-Seven Milky Way-Sized, Extremely Diffuse Galaxies in the Coma Cluster
- Escape fraction of ionizing photons during reionization: effects due to supernova feedback and runaway OB stars
- The Dual Origin of Stellar Halos
- A Superbubble Feedback Model for Galaxy Simulations
- Building Late-Type Spiral Galaxies by In-Situ and Ex-Situ Star Formation
- Halo Mass and Assembly History Exposed in the Faint Outskirts: the Stellar and Dark Matter Haloes of Illustris Galaxies
- The E-MOSAICS project: tracing galaxy formation and assembly with the age-metallicity distribution of globular clusters
- The Dragonfly Nearby Galaxies Survey. I. Substantial variation in the diffuse stellar halos around spiral galaxies
- Diverse Stellar Haloes in Nearby Milky Way-Mass Disc Galaxies
- Parametrizing the Stellar Haloes of Galaxies
- A missing outskirts problem? Comparisons between stellar halos in the Dragonfly Nearby Galaxies Survey and the TNG100 simulation
- Where did the globular clusters of the Milky Way form? Insights from the E-MOSAICS simulations
- The mass fraction of halo stars contributed by the disruption of globular clusters in the E-MOSAICS simulations
- The baryon cycle of Seven Dwarfs with superbubble feedback
- Observing the stellar halo of Andromeda in cosmological simulations: the Auriga2PAndAS pipeline