TY - JOUR
T1 - Highly efficient selection of high-redshift emission-line galaxies for future DESI-like surveys with deep multi-band imaging
AU - DESI Collaboration
AU - Hernandez, Yoquelbin Salcedo
AU - Newman, Jeffrey A.
AU - Andrews, Brett H.
AU - Dey, Biprateep
AU - Zhou, Rongpu
AU - Sailer, Noah
AU - Aguilar, J.
AU - Ahlen, S.
AU - Bianchi, D.
AU - Brooks, D.
AU - Canning, R.
AU - Castander, F. J.
AU - Chaussidon, E.
AU - Claybaugh, T.
AU - Cuceu, A.
AU - Macorra, A. de la
AU - Dey, Arjun
AU - Doel, P.
AU - Ferraro, S.
AU - Font-Ribera, A.
AU - Forero-Romero, J. E.
AU - Gaztañaga, E.
AU - Gontcho, S. Gontcho A
AU - Gutierrez, G.
AU - Herrera-Alcantar, H. K.
AU - Joyce, R.
AU - Juneau, S.
AU - Kehoe, R.
AU - Kirkby, D.
AU - Kisner, T.
AU - Kremin, A.
AU - Lahav, O.
AU - Lamman, C.
AU - Landriau, M.
AU - Levi, M. E.
AU - Manera, M.
AU - Meisner, A.
AU - Miquel, R.
AU - Moustakas, J.
AU - Nadathur, S.
AU - Palanque-Delabrouille, N.
AU - Percival, W. J.
AU - Prada, F.
AU - Pérez-Ràfols, I.
AU - Raichoor, A.
AU - Rossi, G.
AU - Sanchez, E.
AU - Schlegel, D.
AU - Schubnell, M.
AU - Seo, H.
PY - 2026/6/5
Y1 - 2026/6/5
N2 - Emission-line galaxies (ELGs) are an important tracer of baryon acoustic oscillations (BAO) and large-scale structure (LSS) at $z > 1$. In this work, we investigate the feasibility of using deep wide-area multi-band imaging (e.g., from the Rubin Observatory) to efficiently select high redshift ELGs. Using Hyper Supreme-Cam $grizy$ photometry and COSMOS2020 many-band photometric redshifts, we designed simple color cuts guided by a probabilistic random forest classifier to select galaxies at $z = 1.1$--$1.6$. We then empirically tested and refined these color cuts using two samples of galaxies with deep spectroscopy and broad color coverage obtained with the Dark Energy Spectroscopic Instrument (DESI). Compared to DESI ELGs at $z = 1.1$--$1.6$, we achieve a higher redshift measurement success rate (89% versus 69%), a much higher correct redshift range success rate (84% versus 34%), and a far higher net surface density yield (1372 $\mathrm{deg^{-2}}$ versus 660 $\mathrm{deg^{-2}}$). Combining our sample with current DESI ELGs would increase the net ELG number density by a factor of $\sim3$, moving it out of the shot-noise limited regime and reducing the uncertainties on the BAO scale parameter at $z = 1.1$--$1.6$ by a factor of $\sim 2$.
AB - Emission-line galaxies (ELGs) are an important tracer of baryon acoustic oscillations (BAO) and large-scale structure (LSS) at $z > 1$. In this work, we investigate the feasibility of using deep wide-area multi-band imaging (e.g., from the Rubin Observatory) to efficiently select high redshift ELGs. Using Hyper Supreme-Cam $grizy$ photometry and COSMOS2020 many-band photometric redshifts, we designed simple color cuts guided by a probabilistic random forest classifier to select galaxies at $z = 1.1$--$1.6$. We then empirically tested and refined these color cuts using two samples of galaxies with deep spectroscopy and broad color coverage obtained with the Dark Energy Spectroscopic Instrument (DESI). Compared to DESI ELGs at $z = 1.1$--$1.6$, we achieve a higher redshift measurement success rate (89% versus 69%), a much higher correct redshift range success rate (84% versus 34%), and a far higher net surface density yield (1372 $\mathrm{deg^{-2}}$ versus 660 $\mathrm{deg^{-2}}$). Combining our sample with current DESI ELGs would increase the net ELG number density by a factor of $\sim3$, moving it out of the shot-noise limited regime and reducing the uncertainties on the BAO scale parameter at $z = 1.1$--$1.6$ by a factor of $\sim 2$.
KW - astro-ph.GA
KW - astro-ph.CO
U2 - 10.3847/1538-3881/ae6b7c
DO - 10.3847/1538-3881/ae6b7c
M3 - Article
SN - 0004-6256
VL - 172
JO - The Astronomical Journal
JF - The Astronomical Journal
IS - 1
M1 - 11
ER -