English

Shadows in the Dark: Low-Surface-Brightness Galaxies Discovered in the Dark Energy Survey

Astrophysics of Galaxies 2021-03-17 v2 Cosmology and Nongalactic Astrophysics

Abstract

We present a catalog of 23,790 extended low-surface-brightness galaxies (LSBGs) identified in 5000deg2\sim 5000 \deg^2 from the first three years of imaging data from the Dark Energy Survey (DES). Based on a single-component S\'ersic model fit, we define extended LSBGs as galaxies with gg-band effective radii Reff(g)>2.5R_{eff}(g) > 2.5'' and mean surface brightness μˉeff(g)>24.2maga˙rcsec2\bar{\mu}_{eff}(g) > 24.2 \,mag \.arcsec^{-2}. We find that the distribution of LSBGs is strongly bimodal in (gr)(g-r) vs.\ (gi(g-i) color space. We divide our sample into red (gi0.60g-i \geq 0.60) and blue (gi<0.60g-i<0.60) galaxies and study the properties of the two populations. Redder LSBGs are more clustered than their blue counterparts and are correlated with the distribution of nearby (z<0.10z < 0.10) bright galaxies. Red LSBGs constitute 33%\sim 33\% of our LSBG sample, and 30%\sim 30\% of these are located within 1 deg of low-redshift galaxy groups and clusters (compared to 8%\sim 8\% of the blue LSBGs). For nine of the most prominent galaxy groups and clusters, we calculate the physical properties of associated LSBGs assuming a redshift derived from the host system. In these systems, we identify 41 objects that can be classified as ultra-diffuse galaxies, defined as LSBGs with projected physical effective radii Reff>1.5kpcR_{eff} > 1.5 \,kpc and central surface brighthness μ0(g)>24.0magarcsec2\mu_0(g) > 24.0\, mag \,arcsec^{-2}. The wide-area sample of LSBGs in DES can be used to test the role of environment on models of LSBG formation and evolution.

Keywords

Cite

@article{arxiv.2006.04294,
  title  = {Shadows in the Dark: Low-Surface-Brightness Galaxies Discovered in the Dark Energy Survey},
  author = {D. Tanoglidis and A. Drlica-Wagner and K. Wei and T. S. Li and F. J. Sánchez and Y. Zhang and A. H. G. Peter and A. Feldmeier-Krause and J. Prat and K. Casey and A. Palmese and C. Sánchez and J. DeRose and C. Conselice and L. Gagnon and T. M. C. Abbott and M. Aguena and S. Allam and S. Avila and K. Bechtol and E. Bertin and S. Bhargava and D. Brooks and D. L. Burke and A. Carnero Rosell and M. Carrasco Kind and J. Carretero and C. Chang and M. Costanzi and L. N. da Costa and J. De Vicente and S. Desai and H. T. Diehl and P. Doel and T. F. Eifler and S. Everett and A. E. Evrard and B. Flaugher and J. Frieman and J. García-Bellido and D. W. Gerdes and R. A. Gruendl and J. Gschwend and G. Gutierrez and W. G. Hartley and D. L. Hollowood and D. Huterer and D. J. James and E. Krause and K. Kuehn and N. Kuropatkin and M. A. G. Maia and M. March and J. L. Marshall and F. Menanteau and R. Miquel and R. L. C. Ogando and F. Paz-Chinchón and A. K. Romer and A. Roodman and E. Sanchez and V. Scarpine and S. Serrano and I. Sevilla-Noarbe and M. Smith and E. Suchyta and G. Tarle and D. Thomas and D. L. Tucker and A. R. Walker},
  journal= {arXiv preprint arXiv:2006.04294},
  year   = {2021}
}

Comments

31 pages, 19 figures. Version accepted for publication in ApJS. Data products related to this work can be found in: https://des.ncsa.illinois.edu/releases/other/y3-lsbg