Shadow of a Colossus: A z=2.45 Galaxy Protocluster Detected in 3D Ly-a Forest Tomographic Mapping of the COSMOS Field
Khee-Gan Lee, Joseph F. Hennawi, Martin White, J. Xavier Prochaska,, Andreu Font-Ribera, David J. Schlegel, R. Michael Rich, Nao Suzuki, Casey W., Stark, Olivier Le Fevre, Peter E. Nugent, Mara Salvato, and Gianni Zamorani

TL;DR
This study uses 3D Ly-alpha forest tomography with background galaxies and quasars to map large-scale structures at z~2.45, revealing a galaxy protocluster and demonstrating the method's potential for studying cosmic environments.
Contribution
First application of 3D Ly-alpha forest tomography to identify and analyze a galaxy protocluster at z~2.45, linking IGM overdensities with galaxy distributions.
Findings
Detected a galaxy protocluster at z=2.45 with significant IGM overdensity.
Estimated the dark matter mass of the protocluster to be around 9×10^{13} h^{-1} M_sun.
Predicted the protocluster will evolve into a galaxy cluster with mass ~3×10^{14} h^{-1} M_sun.
Abstract
Using moderate-resolution optical spectra from 58 background Lyman-break galaxies and quasars at within a area of the COSMOS field ( projected area density or mean transverse separation), we reconstruct a 3D tomographic map of the foreground Ly forest absorption at with an effective smoothing scale of comoving. Comparing with 61 coeval galaxies with spectroscopic redshifts in the same volume, we find that the galaxy positions are clearly biased towards regions with enhanced IGM absorption in the tomographic map. We find an extended IGM overdensity with deep absorption troughs at associated with a recently-discovered galaxy protocluster at the same redshift. Based on simulations matched to our data, we estimate the…
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