English

DESI Bright Galaxy Survey: Final Target Selection, Design, and Validation

Cosmology and Nongalactic Astrophysics 2023-06-07 v1 Astrophysics of Galaxies

Abstract

Over the next five years, the Dark Energy Spectroscopic Instrument (DESI) will use 10 spectrographs with 5000 fibers on the 4m Mayall Telescope at Kitt Peak National Observatory to conduct the first Stage-IV dark energy galaxy survey. At z<0.6z < 0.6, the DESI Bright Galaxy Survey (BGS) will produce the most detailed map of the Universe during the dark energy dominated epoch with redshifts of >10 million galaxies over 14,000 deg2^2. In this work, we present and validate the final BGS target selection and survey design. From the Legacy Surveys, BGS will target a r<19.5r < 19.5 magnitude-limited sample (BGS Bright); a fainter 19.5<r<20.17519.5 < r < 20.175 sample, color-selected to have high redshift efficiency (BGS Faint); and a smaller low-z quasar sample. BGS will observe these targets using exposure times, scaled to achieve uniform completeness, and visit each point on the footprint three times. We use observations from the Survey Validation programs conducted prior to the main survey along with realistic simulations to show that BGS can complete its strategy and make optimal use of `bright' time. We demonstrate that BGS targets have stellar contamination <1% and that their densities do not depend strongly on imaging properties. We also confirm that BGS Bright will achieve >80% fiber assignment efficiency. Finally, we show that BGS Bright and Faint will achieve >95% redshift success rates with no significant dependence on observing conditions. BGS meets the requirements for an extensive range of scientific applications. BGS will yield the most precise Baryon Acoustic Oscillations and Redshift-Space Distortions measurements at z<0.4z < 0.4. It also presents opportunities to exploit new methods that require highly complete and dense galaxy samples (e.g. N-point statistics, multi-tracers). BGS further provides a powerful tool to study galaxy populations and the relations between galaxies and dark matter.

Keywords

Cite

@article{arxiv.2208.08512,
  title  = {DESI Bright Galaxy Survey: Final Target Selection, Design, and Validation},
  author = {ChangHoon Hahn and Michael J. Wilson and Omar Ruiz-Macias and Shaun Cole and David H. Weinberg and John Moustakas and Anthony Kremin and Jeremy L. Tinker and Alex Smith and Risa H. Wechsler and Steven Ahlen and Shadab Alam and Stephen Bailey and David Brooks and Andrew P. Cooper and Tamara M. Davis and Kyle Dawson and Arjun Dey and Biprateep Dey and Sarah Eftekharzadeh and Daniel J. Eisenstein and Kevin Fanning and Jaime E. Forero-Romero and Carlos S. Frenk and Enrique Gaztañaga and Satya Gontcho A Gontcho and Julien Guy and Klaus Honscheid and Mustapha Ishak and Stéphanie Juneau and Robert Kehoe and Theodore Kisner and Ting-Wen Lan and Martin Landriau and Laurent Le Guillou and Michael E. Levi and Christophe Magneville and Paul Martini and Aaron Meisner and Adam D. Myers and Jundan Nie and Peder Norberg and Nathalie Palanque-Delabrouille and Will J. Percival and Claire Poppett and Francisco Prada and Anand Raichoor and Ashley J. Ross and Sasha Safonova and Christoph Saulder and Eddie Schlafly and David Schlegel and David Sierra-Porta and Gregory Tarle and Benjamin A. Weaver and Christophe Yèche and Pauline Zarrouk and Rongpu Zhou and Zhimin Zhou and Hu Zou},
  journal= {arXiv preprint arXiv:2208.08512},
  year   = {2023}
}

Comments

AJ, submitted, 34 pages, 22 figures, one of a suite of 8 papers detailing targeting for DESI

R2 v1 2026-06-25T01:46:52.324Z