Planck intermediate results. X. Physics of the hot gas in the Coma cluster
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, I. Bikmaev, H. B\"ohringer

TL;DR
This study uses Planck satellite data to analyze the pressure distribution and shock fronts in the Coma Cluster, revealing deviations from models and a correlation between y and radio signals.
Contribution
First detection of SZ emission up to 3 R_500 in Coma and analysis of pressure profiles and shock features using Planck data.
Findings
Planck detects SZ emission up to 3 R_500 in Coma.
Pressure profiles show deviations from universal models at large radii.
Identified shock fronts with Mach numbers around 2.0 in the cluster outskirts.
Abstract
We present an analysis of Planck satellite data on the Coma Cluster observed via the Sunyaev-Zeldovich effect. Planck is able, for the first time, to detect SZ emission up to r ~ 3 X R_500. We test previously proposed models for the pressure distribution in clusters against the azimuthally averaged data. We find that the Arnaud et al. universal pressure profile does not fit Coma, and that their pressure profile for merging systems provides a good fit of the data only at r<R_500: by r=2XR_500 it underestimates the observed y profile by a factor of ~2. This may indicate that at these larger radii either i) the cluster SZ emission is contaminated by unresolved SZ sources along the line of sight or ii) the pressure profile of Coma is higher at r>R_500 than the mean pressure profile predicted by the simulations. The Planck image shows significant local steepening of the y profile in two…
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