Planck intermediate results. VIII. Filaments between interacting clusters
Planck Collaboration: P. A. R. Ade, N. Aghanim, M. Arnaud, M. Ashdown,, F. Atrio-Barandela, J. Aumont, C. Baccigalupi, A. Balbi, A. J. Banday, R. B., Barreiro, J. G. Bartlett, E. Battaner, K. Benabed, A. Beno\^it, J.-P., Bernard, M. Bersanelli, R. Bhatia, I. Bikmaev

TL;DR
This study uses Planck data to detect and analyze the hot, diffuse gas between galaxy clusters, providing new insights into the missing baryons in the universe through the thermal Sunyaev-Zel'dovich effect.
Contribution
First detection of hot intercluster gas via SZ effect using Planck data, constraining its temperature and density in merging galaxy clusters.
Findings
Detected significant tSZ signal between clusters A399-A401
Constrained intercluster medium temperature to 7.1 keV
Measured baryon density of the intercluster medium
Abstract
About half of the baryons of the Universe are expected to be in the form of filaments of hot and low density intergalactic medium. Most of these baryons remain undetected even by the most advanced X-ray observatories which are limited in sensitivity to the diffuse low density medium. The Planck satellite has provided hundreds of detections of the hot gas in clusters of galaxies via the thermal Sunyaev-Zel'dovich (tSZ) effect and is an ideal instrument for studying extended low density media through the tSZ effect. In this paper we use the Planck data to search for signatures of a fraction of these missing baryons between pairs of galaxy clusters. Cluster pairs are good candidates for searching for the hotter and denser phase of the intergalactic medium (which is more easily observed through the SZ effect). Using an X-ray catalogue of clusters and the Planck data, we select physical…
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