The Dragonfly Wide Field Survey. I. Telescope, Survey Design and Data Characterization
Abstract
We present a description of the Dragonfly Wide Field Survey (DWFS), a deep photometric survey of a wide area of sky. The DWFS covers 330 in the equatorial GAMA fields and the Stripe 82 fields in the SDSS and bands. It is carried out with the 48-lens Dragonfly Telephoto Array, a telescope that is optimized for the detection of low surface brightness emission. The main goal of the survey is to study the dwarf galaxy population beyond the Local Group. In this paper, we describe the survey design and show early results. We reach depths of mag arcsec on arcminute scales and show that Milky Way satellites such as Sextans, Bootes, and Ursa Major should be detectable out to Mpc. We also provide an overview of the elements and operation of the 48-lens Dragonfly telescope and a detailed description of its data reduction pipeline. The pipeline is fully automated, with individual frames subjected to a rigorous series of quality tests. The sky subtraction is performed in two stages, ensuring that emission features with spatial scales up to are preserved. The DWFS provides unparalleled sensitivity to low surface brightness features on arcminute scales.
Keywords
Cite
@article{arxiv.1910.14045,
title = {The Dragonfly Wide Field Survey. I. Telescope, Survey Design and Data Characterization},
author = {Shany Danieli and Deborah Lokhorst and Jielai Zhang and Allison Merritt and Pieter van Dokkum and Roberto Abraham and Charlie Conroy and Colleen Gilhuly and Johnny Greco and Steven Janssens and Jiaxuan Li and Qing Liu and Tim B. Miller and Lamiya Mowla},
journal= {arXiv preprint arXiv:1910.14045},
year = {2020}
}
Comments
Accepted for publication in ApJ. This is the first paper in the series. Preliminary results from the survey are shown in figures 5-10