English

The APOSTLE simulations: Rotation curves derived from synthetic 21-cm observations

Astrophysics of Galaxies 2018-08-22 v1

Abstract

The APOSTLE cosmological hydrodynamical simulation suite is a collection of twelve regions 5\sim 5 Mpc in diameter, selected to resemble the Local Group of galaxies in terms of kinematics and environment, and re-simulated at high resolution (minimum gas particle mass of 104M10^4\,{\rm M}_\odot) using the galaxy formation model and calibration developed for the EAGLE project. I select a sample of dwarf galaxies (60<Vmax/kms1<12060 < V_{\rm max}/{\rm km}\,{\rm s}^{-1} < 120) from these simulations and construct synthetic spatially- and spectrally-resolved observations of their 21-cm emission. Using the 3D^{3{\rm D}}BAROLO tilted-ring modelling tool, I extract rotation curves from the synthetic data cubes. In many cases, non-circular motions present in the gas disc hinder the recovery of a rotation curve which accurately traces the underlying mass distribution; a large central deficit of dark matter, relative to the predictions of cold dark matter N-body simulations, may then be erroneously inferred.

Keywords

Cite

@article{arxiv.1712.02562,
  title  = {The APOSTLE simulations: Rotation curves derived from synthetic 21-cm observations},
  author = {Kyle A. Oman},
  journal= {arXiv preprint arXiv:1712.02562},
  year   = {2018}
}

Comments

To appear in the proceedings of IAUS 334: Rediscovering our Galaxy, July 10-14 2017, Telegrafenberg, Potsdam, Germany, Eds. C. Chiappini, I. Minchev, E. Starkenburg & M. Valentini