arXiv · 2511.11826
ODIN: Characterizing the Three-dimensional Structure of Two Protocluster Complexes at $z = 3.1$
Abstract
We present a detailed study of the 3D morphology of two extended associations of multiple protoclusters at $z=3.1$. These protocluster 'complexes', designated COSMOS-z3.1-A and COSMOS-z3.1-C, are the most prominent overdensities of $z=3.1$ Ly$\alpha$ emitters (LAEs) identified in the COSMOS field by the One-hundred-deg$^2$ DECam Imaging in Narrowbands (ODIN) survey. These protocluster complexes have been followed up with extensive spectroscopy from Keck, Gemini, and DESI. Using a probabilistic method that combines photometrically selected and spectroscopically confirmed LAEs, we reconstruct the 3D structure of these complexes on scales of $\approx$50 cMpc. We validate our reconstruction method using the IllustrisTNG300-1 cosmological hydrodynamical simulation and show that it consistently outperforms approaches relying solely on spectroscopic data. The resulting 3D maps reveal that both complexes are irregular and elongated along a single axis, emphasizing the impact of sightline on our perception of structure morphology. The complexes consist of multiple density peaks, ten in COSMOS-z3.1-A and four in COSMOS-z3.1-C. The former is confirmed to be a proto-supercluster, similar to {\it Hyperion} at $z=2.4$ but observed at an even earlier epoch. Multiple `tails' connected to the cores of the density peaks are seen, likely representing cosmic filaments feeding into these extremely overdense regions. The 3D reconstructions further provide strong evidence that Ly$\alpha$ blobs preferentially reside in the outskirts of the highest density regions. Descendant mass estimates of the density peaks suggest that COSMOS-z3.1-A and COSMOS-z3.1-C will evolve to become ultra-massive structures by $z=0$, with total masses $\log(M/M_\odot) \gtrsim 15.3$, exceeding that of Coma.
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Vandana Ramakrishnan, Ashley Ortiz, Byeongha Moon, Eunsoo Jun, David Schlegel, Kyoung-Soo Lee, Jessica Nicole Aguilar, Maria Celeste Artale, David Brooks, Maria Candela Cerdosino, Robin Ciardullo, Todd Claybaugh, Andrei Cuceu, Axel de la Macorra, Arjun Dey, Nicole M. Firestone, Andreu Font-Ribera, Jaime E. Forero-Romero, Eric Gawiser, Enrique Gaztañaga, Caryl Gronwall, Lucia Guaita, Gaston Gutierrez, Sungryong Hong, Ho Seong Hwang, Sang Hyeok Im, Paulina Troncoso Iribarren, Woong-Seob Jeong, Dick Joyce, Ankit Kumar, Claire Lamman, Martin Landriau, Seong-Kook Lee, Jaehyun Lee, Aaron Meisner, Ramon Miquel, John Moustakas, Seshadri Nadathur, Gautam Nagaraj, Julie Nantais, Nelson Padilla, Changbom Park, Will Percival, Francisco Prada, Ignasi Pérez-Ràfols, Graziano Rossi, Eusebio Sanchez, Joseph Harry Silber, Hyunmi Song, David Sprayberry, Gregory Tarlé, Francisco Valdes, Yujin Yang, Ann Zabludoff, Hu Zou. 2025-11-14. ODIN: Characterizing the Three-dimensional Structure of Two Protocluster Complexes at $z = 3.1$. https://arxiv.org/abs/2511.11826
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