English

Dwarf Galaxy Discoveries from the KMTNet Supernova Program III. the Milky-Way Analog NGC~2997 Group

Astrophysics of Galaxies 2023-07-28 v2

Abstract

We present the discovery of 48 new and the analysis of 55, including 7 previously discovered, dwarf galaxy candidates around the giant spiral galaxy NGC~2997 using deep BVIBVI images from the KMTNet Supernova Program. Their VV-band central surface brightness and total absolute magnitudes are in the range of 20.3--26.7 mag arcsec2^{-2} and --(8.02--17.69) mag, respectively, while the II-band effective radii are 0.14--2.97 kpc. We obtain α\alpha \simeq --1.43 ±\pm 0.02 for the faint-end slope of their luminosity function, comparable to previously measured values but shallower than theoretical predictions based on Λ\LambdaCDM models. The distance-independent distributions of their mass and color suggest that the group could have recently accreted new massive members from the surrounding fields. The systematically bluer colors of the brighter members indicate younger stellar population and higher star formation activities in them, which appears to be consistent with similar findings from the SAGA or ELVES survey. We suggest that the massive and bluer dwarf galaxies in the group have experienced less environmental quenching due to their recent accretion, while environmental quenching is more effective for the low-mass members. The interpretation of NGC~2997 being populationally young with recent accretion of massive members is also consistent with the overall morphological distribution of the dwarf galaxies showing a lack of morphologically evolved candidates but a plethora of irregularly shaped ones. Our detection rate of dwarf galaxy candidates in the NGC~2997 group and their inferred star formation activities are comparable to those found in Milky Way analog systems from recent surveys within the magnitude limit MV_{V} \lesssim --13 mag.

Keywords

Cite

@article{arxiv.2303.16849,
  title  = {Dwarf Galaxy Discoveries from the KMTNet Supernova Program III. the Milky-Way Analog NGC~2997 Group},
  author = {Tony Junjing Fan and Dae-Sik Moon and Hong Soo Park and Dennis Zaritsky and Sang Chul Kim and Youngdae Lee and Ting S. Li and Yuan Qi Ni and Jeehye Shin and Sang-Mok Cha and Yongseok Lee},
  journal= {arXiv preprint arXiv:2303.16849},
  year   = {2023}
}

Comments

24 pages, 14 figures