English

Tidal stripping and the structure of dwarf galaxies in the Local Group

Astrophysics of Galaxies 2018-03-16 v2

Abstract

The shallow faint-end slope of the galaxy mass function is usually reproduced in Λ\LambdaCDM galaxy formation models by assuming that the fraction of baryons that turns into stars drops steeply with decreasing halo mass and essentially vanishes in haloes with maximum circular velocities Vmax<20V_{\rm max}<20-3030 km/s. Dark matter-dominated dwarfs should therefore have characteristic velocities of about that value, unless they are small enough to probe only the rising part of the halo circular velocity curve (i.e., half-mass radii, r1/21r_{1/2}\ll 1 kpc). Many dwarfs have properties in disagreement with this prediction: they are large enough to probe their halo VmaxV_{\rm max} but their characteristic velocities are well below 2020 km/s. These `cold faint giants' (an extreme example is the recently discovered Crater 2 Milky Way satellite) can only be reconciled with our Λ\LambdaCDM models if they are the remnants of once massive objects heavily affected by tidal stripping. We examine this possibility using the APOSTLE cosmological hydrodynamical simulations of the Local Group. Assuming that low velocity dispersion satellites have been affected by stripping, we infer their progenitor masses, radii, and velocity dispersions, and find them in remarkable agreement with those of isolated dwarfs. Tidal stripping also explains the large scatter in the mass discrepancy-acceleration relation in the dwarf galaxy regime: tides remove preferentially dark matter from satellite galaxies, lowering their accelerations below the amin1011m/s2a_{\rm min}\sim 10^{-11} m/s^2 minimum expected for isolated dwarfs. In many cases, the resulting velocity dispersions are inconsistent with the predictions from Modified Newtonian Dynamics, a result that poses a possibly insurmountable challenge to that scenario.

Keywords

Cite

@article{arxiv.1707.03898,
  title  = {Tidal stripping and the structure of dwarf galaxies in the Local Group},
  author = {Azadeh Fattahi and Julio F. Navarro and Carlos S. Frenk and Kyle Oman and Till Sawala and Matthieu Schaller},
  journal= {arXiv preprint arXiv:1707.03898},
  year   = {2018}
}

Comments

replaced to match the accepted version. 2 new figures added compared to the previous version