Satellites Around Milky Way Analogs: Tension in the Number and Fraction of Quiescent Satellites Seen in Observations Versus Simulations
arXiv:2105.09321 · doi:10.3847/2041-8213/ac0e3a
Abstract
We compare the star-forming properties of satellites around Milky Way (MW) analogs from the Stage~II release of the Satellites Around Galactic Analogs Survey (SAGA-II) to those from the APOSTLE and Auriga cosmological zoom-in simulation suites. We use archival GALEX UV imaging as a star-formation indicator for the SAGA-II sample and derive star-formation rates (SFRs) to compare with those from APOSTLE and Auriga. We compare our detection rates from the NUV and FUV bands to the SAGA-II H detections and find that they are broadly consistent with over of observed satellites detected in all three tracers. We apply the same spatial selection criteria used around SAGA-II hosts to select satellites around the MW-like hosts in APOSTLE and Auriga. We find very good overall agreement in the derived SFRs for the star-forming satellites as well as the number of star-forming satellites per host in observed and simulated samples. However, the number and fraction of quenched satellites in the SAGA-II sample are significantly lower than those in APOSTLE and Auriga below a stellar mass of , even when the SAGA-II incompleteness and interloper corrections are included. This discrepancy is robust with respect to the resolution of the simulations and persists when alternative star-formation tracers are employed. We posit that this disagreement is not readily explained by vagaries in the observed or simulated samples considered here, suggesting a genuine discrepancy that may inform the physics of satellite populations around MW analogs.
Accepted for publication in ApJ Letters after minor changes to text
References in corpus (9)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- The Auriga Project: the properties and formation mechanisms of disc galaxies across cosmic time
- The Gas Content and Stripping of Local Group Dwarf Galaxies
- Gas accretion and galactic fountain flows in the Auriga cosmological simulations: angular momentum and metal re-distribution
- Discovery of diffuse dwarf galaxy candidates around M101
- Galaxy And Mass Assembly (GAMA): Environmental Quenching of Centrals and Satellites in Groups
- Can cosmological simulations capture the diverse satellite populations of observed Milky Way analogues?
- The Mass Dependence of Dwarf Satellite Galaxy Quenching
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- The Role of Mass and Environment on Satellite distributions around Milky Way analogs in the Romulus25 simulation
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