Diffuse baryonic matter beyond 2020
M. Markevitch, F. Nicastro, P. Nulsen, E. Rasia, A. Vikhlinin, A., Kravtsov, W. Forman, G. Brunetti, C. Sarazin, M. Elvis, G. Fabbiano, A., Hornschemeier, R. Brissenden

TL;DR
This paper discusses the importance of hot, diffuse baryonic matter in galaxy clusters and the intergalactic medium for understanding cosmology, emphasizing the need for advanced future X-ray observatories with unprecedented capabilities.
Contribution
It highlights the scientific potential and technical requirements for next-generation X-ray observatories to study diffuse baryonic matter beyond 2020.
Findings
Clusters as cosmological probes
Unexplored warm intergalactic medium
Need for advanced X-ray instrumentation
Abstract
The hot, diffuse gas that fills the largest overdense structures in the Universe -- clusters of galaxies and a web of giant filaments connecting them -- provides us with tools to address a wide array of fundamental astrophysical and cosmological questions via observations in the X-ray band. Clusters are sensitive cosmological probes. To utilize their full potential for precision cosmology in the following decades, we must precisely understand their physics -- from their cool cores stirred by jets produced by the central supermassive black hole (itself fed by inflow of intracluster gas), to their outskirts, where the infall of intergalactic medium (IGM) drives shocks and accelerates cosmic rays. Beyond the cluster confines lies the virtually unexplored warm IGM, believed to contain most of the baryonic matter in the present-day Universe. As a depository of all the matter ever ejected…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Cosmology and Gravitation Theories · Astrophysics and Cosmic Phenomena
