- Main
Clustering analysis of medium-band selected high-redshift galaxies
- Ebina, H;
- White, M;
- Raichoor, A;
- Dey, Arjun;
- Schlegel, D;
- Lang, D;
- Luo, Y;
- Aguilar, J;
- Ahlen, S;
- Anand, A;
- Bianchi, D;
- Brooks, D;
- Castander, FJ;
- Claybaugh, T;
- Cuceu, A;
- Dawson, KS;
- de la Macorra, A;
- Dey, Biprateep;
- Doel, P;
- Ferraro, S;
- Font-Ribera, A;
- Forero-Romero, JE;
- Gaztañaga, E;
- Gontcho, S Gontcho A;
- Gutierrez, G;
- Herrera-Alcantar, HK;
- Howlett, C;
- Ishak, M;
- Joyce, R;
- Kehoe, R;
- Kirkby, D;
- Kisner, T;
- Kremin, A;
- Lahav, O;
- Lambert, A;
- Landriau, M;
- Le Guillou, L;
- Magneville, C;
- Manera, M;
- Martini, P;
- Meisner, A;
- Miquel, R;
- Moustakas, J;
- Mueller, E;
- Nadathur, S;
- Palanque-Delabrouille, N;
- Percival, WJ;
- Poppett, C;
- Prada, F;
- Pérez-Ràfols, I;
- Rossi, G;
- Sanchez, E;
- Schubnell, M;
- Silber, J;
- Sprayberry, D;
- Tarlé, G;
- Weaver, BA;
- Yèche, C;
- Zhou, R;
- Zou, H
Published Web Location
https://doi.org/10.1088/1475-7516/2026/03/019Abstract
Next-generation large-scale structure spectroscopic surveys will probe cosmology at high redshifts (2.3 < z < 3.5), relying on abundant galaxy tracers such as Lyα emitters (LAEs) and Lyman break galaxies (LBGs). Medium-band photometry has emerged as a potential technique for efficiently selecting these high-redshift galaxies. In this work, we present clustering analysis of medium-band selected galaxies at high redshift, utilizing photometric data from the Intermediate Band Imaging Survey (IBIS) and spectroscopic data from the Dark Energy Spectroscopic Instrument (DESI). We interpret the clustering of such samples using both Halo Occupation Distribution (HOD) modeling and a perturbation theory description of large-scale structure. Our modeling indicates that the current target sample is composed from an overlapping mixture of LAEs and LBGs with emission lines. Despite differences in target selection, we find that the clustering properties are consistent with previous studies, with correlation lengths r 0 ≃ 3-4 h -1Mpc and a linear bias of b ∼ 1.8-2.5. Finally, we discuss the simulation requirements implied by these measurements and demonstrate that the properties of the samples would make them excellent targets to enhance our understanding of the high-z universe.
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