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The XMM Cluster Outskirts Project (X-COP): Thermodynamic properties of the intracluster medium out to R 200 in Abell 2319

机译:XMM集群郊区项目(X-COP):在Abell 2319中集群内介质的热力学特性达到 R 200

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Aims. We present the joint analysis of the X-ray and Sunyaev–Zel’dovich (SZ) signals in Abell 2319, the galaxy cluster with the highest signal-to-noise ratio in SZ Planck maps and that has been surveyed within our XMM-Newton Cluster Outskirts Project (X-COP), a very large program which aims to grasp the physical condition in 12 local ( z < 0.1) and massive ( M _(200)> 3 × 10~(14)? M _(⊙)) galaxy clusters out to R _(200)and beyond. Methods. We recover the profiles of the thermodynamic properties by the geometrical deprojection of the X-ray surface brightness, of the SZ Comptonization parameter, and accurate and robust spectroscopic measurements of the gas temperature out to 3.2 Mpc (1.6 R _(200)), 4 Mpc (2 R _(200)), and 1.6 Mpc (0.8 R _(200)), respectively. We resolve the clumpiness of the gas density to be below 20% over the entire observed volume. We also demonstrate that most of this clumpiness originates from the ongoing merger and can be associated with large-scale inhomogeneities (the “residual” clumpiness). We estimate the total mass through the hydrostatic equilibrium equation. This analysis is done both in azimuthally averaged radial bins and in eight independent angular sectors, enabling us to study in detail the azimuthal variance of the recovered properties. Results. Given the exquisite quality of the X-ray and SZ datasets, their radial extension, and their complementarity, we constrain at R _(200)the total hydrostatic mass, modelled with a Navarro–Frenk–White profile at very high precision ( M _(200)= 10.7 ± 0.5~(stat.)± 0.9~(syst.)× 10~(14)? M _(⊙)). We identify the ongoing merger and how it is affecting differently the gas properties in the resolved azimuthal sectors. We have several indications that the merger has injected a high level of non-thermal pressure in this system: the clumping free density profile is above the average profile obtained by stacking Rosat/PSPC observations; the gas mass fraction recovered using our hydrostatic mass profile exceeds the expected cosmic gas fraction beyond R _(500); the pressure profile is flatter than the fit obtained by the Planck Collaboration; the entropy profile is flatter than the mean profile predicted from non-radiative simulations; the analysis in azimuthal sectors has revealed that these deviations occur in a preferred region of the cluster. All these tensions are resolved by requiring a relative support of about 40% from non-thermal to the total pressure at R _(200).
机译:目的我们介绍了X射线和Sunyaev–Zel'dovich(SZ)信号的联合分析,该信号是Sbell普朗克图中信噪比最高的星系团Abell 2319,并且已在XMM-Newton中进行了调查。集群郊区项目(X-COP),这是一个非常大的程序,旨在掌握12个局部(z <0.1)和大块(M _(200)> 3×10〜(14)?M _(⊙) )星系聚集到R _(200)及以后。方法。我们通过X射线表面亮度的几何投影,SZ Comptonization参数以及气体温度高达3.2 Mpc(1.6 R _(200)),4的准确而可靠的光谱测量来恢复热力学性质的分布Mpc(2 R _(200))和1.6 Mpc(0.8 R _(200))。我们解决了在整个观察到的体积内气体密度的团块低于20%的问题。我们还证明,这种团块大部分来自正在进行的合并,并且可能与大规模的不均匀性(“残余”团块)相关。我们通过静水力平衡方程估算总质量。这项分析是在方位角平均的径向区间和八个独立的角扇区中进行的,这使我们能够详细研究恢复特性的方位角方差。结果。鉴于X射线和SZ数据集的优良品质,其径向扩展及其互补性,我们将总静水质量限制在R _(200)处,并以极高的精度(Na varro-Frenk-White剖面)(M _ (200)= 10.7±0.5〜(stat。)±0.9〜(syst。)×10〜(14)≤M_(⊙))。我们确定正在进行的合并及其对已解决方位角部门中天然气属性的不同影响。我们有几个迹象表明,合并为该系统注入了高水平的非热压力:结块的自由密度分布图高于通过堆叠Rosat / PSPC观测值获得的平均分布图;使用我们的静水质量曲线回收的气体质量分数超过了预期的宇宙气体分数,超出R _(500);压力曲线比普朗克协作获得的拟合度更平坦;熵分布比非辐射模拟预测的平均分布平坦。方位角扇区的分析表明,这些偏差发生在群集的首选区域。通过要求从非热到R _(200)的总压力的大约40%的相对支持,可以解决所有这些张力。

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