Prospects for studying the mass and gas in protoclusters with future CMB observations
Anna Gardner, Eric Baxter, Srinivasan Raghunathan, Weiguang Cui,, Daniel Ceverino

TL;DR
Future CMB observations, especially CMB-S4, could significantly advance understanding of protoclusters' mass and gas properties through SZ effect and gravitational lensing, despite detection challenges.
Contribution
This study forecasts the potential of future CMB-S4 experiments to detect and characterize protoclusters using hydrodynamical simulations, highlighting prospects for measuring their mass and gas content.
Findings
20% chance of detecting main halos at z~2 with SNR > 5
Stacked measurements can determine average mass and gas content of protoclusters
CMB-S4 can achieve high SNR measurements for large protocluster samples
Abstract
Protoclusters are the progenitors of massive galaxy clusters. Understanding the properties of these structures is important for building a complete picture of cluster formation and for understanding the impact of environment on galaxy evolution. Future cosmic microwave background (CMB) surveys may provide insight into the properties of protoclusters via observations of the thermal Sunyaev Zel'dovich (SZ) effect and gravitational lensing. Using realistic hydrodynamical simulations of protoclusters from the Three Hundred Project, we forecast the ability of CMB Stage 4-like (CMB-S4) experiments to detect and characterize protoclusters with observations of these two signals. For protoclusters that are the progenitors of clusters at with we find that the S4-Ultra deep survey has a roughly 20\% chance of detecting the main halos in these…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Radio Astronomy Observations and Technology · Astronomy and Astrophysical Research
