English

Dwarf Galaxy Discoveries from the KMTNet Supernova Program I. The NGC 2784 Galaxy Group

Astrophysics of Galaxies 2017-10-11 v1

Abstract

We present BVIBVI surface photometry of 31 dwarf galaxy candidates discovered in a deep image stack from the KMTNet Supernova Program of \sim 30 square degrees centered on the nearby NGC 2784 galaxy group. Our final images have a 3σ\sigma surface brightness detection limit of μV28.5\mu_V\approx 28.5 mag arcsec2^{-2}. The faintest central surface brightness that we measure is μ0,V=26.1\mu_{0,V} = 26.1 mag arcsec2^{-2}. If these candidates are at the distance of NGC 2784, then they have absolute magnitudes greater than MV=9.5M_V = -9.5 mag and effective radii larger than 170 pc. Their radial number density decreases exponentially with distance from the center of NGC 2784 until it flattens beyond a radius of 0.5 Mpc. We interpret the baseline density level to represent the background contamination and so estimate that 22 of the 31 new candidates are dwarf members of the group. The candidate's average color, (BV)00.7\langle (B-V)_0\rangle\approx 0.7, and Sersic structural parameters are consistent with those parameters for the dwarf populations of other groups. We find that the central population of dwarfs is redder and brighter than the rest of the population. The measured faint end slope of the luminosity function, α1.33\alpha\approx-1.33, is steeper than that of the Local Group but consistent with published results for other groups. Such comparisons are complicated by systematic differences among different studies, but will be simpler when the KMTNet survey, which will provide homogenous data for 15 to 20 groups, is completed.

Keywords

Cite

@article{arxiv.1708.07326,
  title  = {Dwarf Galaxy Discoveries from the KMTNet Supernova Program I. The NGC 2784 Galaxy Group},
  author = {Hong Soo Park and Dae-Sik Moon and Dennis Zaritsky and Mina Pak and Jae-Joon Lee and Sang Chul Kim and Dong-Jin Kim and Sang-Mok Cha},
  journal= {arXiv preprint arXiv:1708.07326},
  year   = {2017}
}

Comments

35 pages, 15 figues, Accepted for publication in the Astrophysical Journal