Orbital pericenters and the inferred dark matter halo structure of satellite galaxies
arXiv:2012.07865 · doi:10.1093/mnras/stab829
Abstract
Using the phat-ELVIS suite of Milky Way-size halo simulations, we show that subhalo orbital pericenters, , correlate with their dark matter halo structural properties. Specifically, at fixed maximum circular velocity, , subhalos with smaller are more concentrated (have smaller values) and have lost more mass, with larger peak circular velocities, , prior to infall. These trends provide information that can tighten constraints on the inferred and values for known Milky Way satellites. We illustrate this using published pericenter estimates enabled by Gaia for the nine classical Milky Way dwarf spheroidal satellites. The two densest dSph satellites (Draco and Ursa Minor) have relatively small pericenters, and this pushes their inferred and values lower than they would have been without pericenter information. For Draco, we infer km s (compared to km s without pericenter information). Such a shift exacerbates the traditional Too Big to Fail problem. Draco's peak circular velocity range prior to infall narrows from km s without pericenter information to km s with the constraint. Over the full population of classical dwarf spheroidals, we find no correlation between and stellar mass today, indicative of a high level of stochasticity in galaxy formation at stellar masses below M. As proper motion measurements for dwarf satellites become more precise, they should enable useful priors on the expected structure and evolution of their host dark matter subhalos.
6 Pages, 4 figures, submitted to MNRAS
References in corpus (10)
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- A common mass scale for satellite galaxies of the Milky Way
- Hundreds of Milky Way Satellites? Luminosity Bias in the Satellite Luminosity Function
- Dark Matter Substructure in Numerical Simulations: A Tale of Discreteness Noise, Runaway Instabilities, and Artificial Disruption
- Too Big to Fail in the Local Group
- The Population of Dark Matter Subhaloes: Mass Functions and Average Mass Loss Rates
- The asymptotic tidal remnants of cold dark matter subhalos
- The properties of "dark" ΛCDM halos in the Local Group
- 3D motions in the Sculptor dwarf galaxy as a glimpse of a new era
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- Orbital dynamics and histories of satellite galaxies around Milky Way-mass galaxies in the FIRE simulations
- On the anti-correlation between pericentric distance and inner dark matter density of Milky Way's dwarf spheroidal galaxies
- Diving into dangerous tides: The impact of galaxy cluster tidal environments on satellite galaxy mass densities