REVIEW 4 cited by
Auriga Streams II: orbital properties of tidally disrupting satellites of Milky Way-mass galaxies
Not yet reviewed by Pith; the record is open.
This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.
SPECIMEN: schema-true, not a live event
T0 review · schema-true
One-sentence machine reading of the paper's core claim.
pith:XXXXXXXX · record.json · timestamp
abstract
Galaxies like the Milky Way are surrounded by complex populations of satellites at all stages of tidal disruption. In this paper, we present a dynamical study of the disrupting satellite galaxies in the Auriga simulations that are orbiting 28 distinct Milky Way-mass hosts across three resolutions. We find that the satellite galaxy populations are highly disrupted. The majority of satellites that remain fully intact at present day were accreted recently without experiencing more than one pericentre ($n_{\rm peri} \lesssim 1$) and have large apocentres ($r_{\rm apo} \gtrsim 200$ kpc) and pericentres ($r_{\rm peri} \gtrsim 50$ kpc). The remaining satellites have experienced significant tidal disruption and, given full knowledge of the system, would be classified as stellar streams. We find stellar streams in Auriga across the range of pericentres and apocentres of the known Milky Way dwarf galaxy streams and, interestingly, overlapping significantly with the Milky Way intact satellite population. We find no significant change in satellite orbital distributions across resolution. However, we do see substantial halo-to-halo variance of $(r_\text{peri}, r_\text{apo})$ distributions across host galaxies, as well as a dependence of satellite orbits on host halo mass - systems disrupt at larger pericentres and apocentres in more massive hosts. Our results suggest that either cosmological simulations (including, but not limited to, Auriga) are disrupting satellites far too readily, or that the Milky Way's satellites are more disrupted than current imaging surveys have revealed. Future observing facilities and careful mock observations of these systems will be key to revealing the nature of this apparent discrepancy.
Forward citations
Cited by 4 Pith papers
-
Energy-Space Analysis of Tidal Stripping in Stellar-Dark Matter Systems
Stars and dark matter in tidally stripped two-component galaxies lose mass at the same truncation energy, enabling dark matter constraints from stellar kinematics.
-
Simulations of the accreted stellar halos of low-mass field galaxies
For field galaxies below Milky Way mass, accreted stellar halos are predicted to be diffuse, often compact, and generally subdominant, with the accreted component overtaking in-situ stars only far outside the galaxy.
-
Spectroscopic Analysis of Pictor II: a very low metallicity ultra-faint dwarf galaxy bound to the Large Magellanic Cloud
Pictor II is spectroscopically confirmed as an extremely metal-poor, dark matter-dominated ultra-faint dwarf galaxy that is very likely bound to the Large Magellanic Cloud.
-
Deep Photometric Observations of Ultra-Faint Milky Way Satellites Centaurus I and Eridanus IV
Deep photometry confirms both galaxies are old, metal-poor ultra-faint dwarfs and reveals a significant extended feature around Eridanus IV whose origin is not yet determined.
Discussion (0). Continue with ORCID to comment.