English

The statistical challenge of constraining the low-mass IMF in Local Group dwarf galaxies

Astrophysics of Galaxies 2017-04-12 v2

Abstract

We use Monte Carlo simulations to explore the statistical challenges of constraining the characteristic mass (mcm_c) and width (σ\sigma) of a lognormal sub-solar initial mass function (IMF) in Local Group dwarf galaxies using direct star counts. For a typical Milky Way (MW) satellite (MV=8M_{V} = -8), jointly constraining mcm_c and σ\sigma to a precision of 20%\lesssim 20\% requires that observations be complete to 0.2M\lesssim 0.2 M_{\odot}, if the IMF is similar to the MW IMF. A similar statistical precision can be obtained if observations are only complete down to 0.4M0.4M_{\odot}, but this requires measurement of nearly 100×\times more stars, and thus, a significantly more massive satellite (MV12M_{V} \sim -12). In the absence of sufficiently deep data to constrain the low-mass turnover, it is common practice to fit a single-sloped power law to the low-mass IMF, or to fit mcm_c for a lognormal while holding σ\sigma fixed. We show that the former approximation leads to best-fit power law slopes that vary with the mass range observed and can largely explain existing claims of low-mass IMF variations in MW satellites, even if satellite galaxies have the same IMF as the MW. In addition, fixing σ\sigma during fitting leads to substantially underestimated uncertainties in the recovered value of mcm_c (by a factor of 4\sim 4 for typical observations). If the IMFs of nearby dwarf galaxies are lognormal and do vary, observations must reach down to mc\sim m_c in order to robustly detect these variations. The high-sensitivity, near-infrared capabilities of JWST and WFIRST have the potential to dramatically improve constraints on the low-mass IMF. We present an efficient observational strategy for using these facilities to measure the IMFs of Local Group dwarf galaxies.

Keywords

Cite

@article{arxiv.1701.02347,
  title  = {The statistical challenge of constraining the low-mass IMF in Local Group dwarf galaxies},
  author = {Kareem El-Badry and Daniel R. Weisz and Eliot Quataert},
  journal= {arXiv preprint arXiv:1701.02347},
  year   = {2017}
}

Comments

Accepted to MNRAS with minor revisions since v1. 12 pages, 9 figures, plus appendices