2021ApJ...906...96A


Query : 2021ApJ...906...96A

2021ApJ...906...96A - Astrophys. J., 906, 96-96 (2021/January-2)

Ultrafaint dwarfs in a Milky Way context: introducing the mint condition DC Justice League simulations.

APPLEBAUM E., BROOKS A.M., CHRISTENSEN C.R., MUNSHI F., QUINN T.R., SHEN S. and TREMMEL M.

Abstract (from CDS):

We present results from the "Mint" resolution DC Justice League suite of Milky Way-like zoom-in cosmological simulations, which extend our study of nearby galaxies down into the ultrafaint dwarf (UFD) regime for the first time. The mass resolution of these simulations is the highest ever published for cosmological Milky Way zoom-in simulations run to z = 0, with initial star (dark matter) particle masses of 994 (17900) M, and a force resolution of 87 pc. We study the surrounding dwarfs and UFDs, and find that the simulations match the observed dynamical properties of galaxies with -3 > MV > -19, and reproduce the scatter seen in the size-luminosity plane for rh >= 200 pc. We predict the vast majority of nearby galaxies will be observable by the Vera Rubin Observatory's coadded Legacy Survey of Space and Time. We additionally show that faint dwarfs with velocity dispersions <=5 km s–1 result from severe tidal stripping of the host halo. We investigate the quenching of UFDs in a hydrodynamical Milky Way context and find that the majority of UFDs are quenched prior to interactions with the Milky Way, though some of the quenched UFDs retain their gas until infall. Additionally, these simulations yield some unique dwarfs that are the first of their kind to be simulated, e.g., an H I-rich field UFD, a late-forming UFD that has structural properties similar to Crater 2, as well as a compact dwarf satellite that has no dark matter at z = 0.

Abstract Copyright: © 2021. The American Astronomical Society. All rights reserved.

Journal keyword(s): Dwarf galaxies - Galaxy evolution - Hydrodynamical simulations - Galaxy quenching

VizieR on-line data: <Available at CDS (J/ApJ/906/96): table2.dat>

Simbad objects: 22

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Number of rows : 22
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 IC 10 G 00 20 25.50 +59 17 17.0   13.6 9.5     ~ 1118 1
2 NGC 185 Sy2 00 38 57.9400026024 +48 20 15.035874648   9.10 9.2     ~ 800 1
3 M 110 GiG 00 40 22.0572349992 +41 41 07.507220136   8.92 8.07     ~ 1308 1
4 M 32 GiG 00 42 41.82480 +40 51 54.6120 9.51 9.03 8.08     ~ 2154 2
5 M 31 AGN 00 42 44.330 +41 16 07.50 4.86 4.36 3.44     ~ 12645 1
6 NAME M31 Group GrG 00 47 28.6 +40 17 23           ~ 63 0
7 NAME Pisces V G 00 59 29.8 +32 22 36     14.4     ~ 135 0
8 NAME Pisces I G 01 03 56.6 +21 53 41   16.18 14.3     ~ 387 0
9 NAME Phoenix Dwarf Galaxy Sy1 01 51 06.3 -44 26 41   13.48 13.2 12.69   ~ 533 2
10 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 7064 0
11 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17430 0
12 NAME Leo T G 09 34 53.4 +17 03 05     15.1     ~ 391 0
13 NAME M 81-82 Group GrG 09 55 +69.1           ~ 717 0
14 M 81 Sy2 09 55 33.1726556496 +69 03 55.062505368   7.89 6.94     ~ 4449 3
15 NAME Leo P BiC 10 21 45.123 +18 05 16.89           ~ 220 0
16 M 94 SyG 12 50 53.0737971432 +41 07 12.900884628 9.15 8.96 8.24 7.78   ~ 1386 2
17 NAME Cen A Group GrG 13 20 33.9 -44 58 51           ~ 263 0
18 NAME Centaurus A Sy2 13 25 27.61521044 -43 01 08.8050291   8.18 6.84 6.66   ~ 4484 3
19 M 101 GiP 14 03 12.583 +54 20 55.50   8.46 7.86 7.76   ~ 2914 2
20 NAME Tuc Galaxy G 22 41 49.6 -64 25 10   15.7 15.2     ~ 300 0
21 NAME Gaia Enceladus-Sausage St* ~ ~           ~ 522 0
22 NAME Local Group GrG ~ ~           ~ 8389 0

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