The One-hundred-deg2 DECam Imaging in Narrowbands (ODIN) survey is carrying out a systematic search for protoclusters during Cosmic Noon, using Lyα-emitting galaxies (LAEs) as tracers. Once completed, ODIN aims to identify hundreds of protoclusters at redshifts of 2.4, 3.1, and 4.5 across seven extragalactic fields, covering a total area of up to 91~deg2. In this work, we report strong clustering of high-redshift protoclusters through the protocluster-LAE cross-correlation function measurements of 150 protocluster candidates at z=2.4 and 3.1, identified in two ODIN fields with a total area of 13.9 deg2. At z=2.4 and 3.1, respectively, the inferred protocluster biases are 6.6−1.1+1.3 and 6.1−1.1+1.3, corresponding to mean halo masses of log⟨M/M⊙⟩=13.53−0.24+0.21 and 12.96−0.33+0.28. By the present day, these protoclusters are expected to evolve into virialized galaxy clusters with a mean mass of ∼1014.5M⊙. By comparing the observed number density of protoclusters to that of halos with the measured clustering strength, we find that our sample is highly complete. Finally, the similar descendant masses derived for our samples at z=2.4 and 3.1 assuming that the halo number density remains constant suggest that they represent similar structures observed at different cosmic epochs. As a consequence, any observed differences between the two samples can be understood as redshift evolution. The ODIN protocluster samples will thus provide valuable insights into the cosmic evolution of cluster galaxies.
@article{arxiv.2410.18341,
title = {ODIN: Strong Clustering of Protoclusters at Cosmic Noon},
author = {Vandana Ramakrishnan and Kyoung-Soo Lee and Nicole Firestone and Eric Gawiser and Maria Celeste Artale and Caryl Gronwall and Lucia Guaita and Sang Hyeok Im and Woong-Seob Jeong and Seongjae Kim and Ankit Kumar and Jaehyun Lee and Byeongha Moon and Nelson Padilla and Changbom Park and Hyunmi Song and Paulina Troncoso and Yujin Yang},
journal= {arXiv preprint arXiv:2410.18341},
year = {2024}
}