2019MNRAS.483.4086B


Query : 2019MNRAS.483.4086B

2019MNRAS.483.4086B - Mon. Not. R. Astron. Soc., 483, 4086-4099 (2019/March-1)

Warm FIRE: simulating galaxy formation with resonant sterile neutrino dark matter.

BOZEK B., FITTS A., BOYLAN-KOLCHIN M., GARRISON-KIMMEL S., ABAZAJIAN K., BULLOCK J.S., KERES D., FAUCHER-GIGUERE C.-A., WETZEL A., FELDMANN R. and HOPKINS P.F.

Abstract (from CDS):

We study the impact of a warm dark matter (WDM) cosmology on dwarf galaxy formation through a suite of cosmological hydrodynamical zoom-in simulations of M_ halo_ ~1010 M dark matter haloes as part of the Feedback in Realistic Environments (FIRE) project. A main focus of this paper is to evaluate the combined effects of dark matter physics and stellar feedback on the well-known small-scale issues found in cold dark matter (CDM) models. We find that the z = 0 stellar mass of a galaxy is strongly correlated with the central density of its host dark matter halo at the time of formation, zf, in both CDM and WDM models. WDM haloes follow the same M*(z = 0)-Vmax(zf) relation as in CDM, but they form later, are less centrally dense, and therefore contain galaxies that are less massive than their CDM counterparts. As a result, the impact of baryonic effects on the central gravitational potential is typically diminished relative to CDM. However, the combination of delayed formation in WDM and energy input from stellar feedback results in dark matter profiles with lower overall densities. The WDM galaxies studied here have a wider diversity of star formation histories (SFHs) than the same systems simulated in CDM, and the two lowest M* WDM galaxies form all of their stars at late times. The discovery of young ultrafaint dwarf galaxies with no ancient star formation - which do not exist in our CDM simulations - would therefore provide evidence in support of WDM.

Abstract Copyright: © 2018 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): galaxies: dwarf - galaxies: evolution - galaxies: formation - galaxies: star formation - cosmology: theory - dark matter

Simbad objects: 4

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Number of rows : 4
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 M 31 AGN 00 42 44.330 +41 16 07.50 4.86 4.36 3.44     ~ 12643 1
2 ACO 426 ClG 03 19 47.2 +41 30 47           ~ 2257 1
3 NAME Leo A G 09 59 26.46 +30 44 47.0 14.08 13.54 13.26 13.33   ~ 615 0
4 NAME Local Group GrG ~ ~           ~ 8387 0

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