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Spectral imaging of the thermal Sunyaev–Zel’dovich effect in X-COP galaxy clusters: method and validation

机译:X-COP银河星团中热Sunyaev–Zel’dovich效应的光谱成像:方法和验证

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The imaging of galaxy clusters through the Sunyaev–Zel’dovich effect is a valuable tool to probe the thermal pressure of the intra-cluster gas, especially in the outermost regions where X-ray observations suffer from photon statistics. For the first time, we produce maps of the Comptonization parameter by applying a locally parametric algorithm for sparse component separation to the latest frequency maps released by Planck . The algorithm takes into account properties of real cluster data through the two-component modelling of the spectral energy density of thermal dust, and the masking of bright point sources. Its robustness has been improved in the low signal-to-noise regime, thanks to the implementation of a deconvolution of Planck beams in the chi-square minimisation of each wavelet coefficient. We applied this procedure to twelve low-redshift galaxy clusters detected by Planck with the highest signal-to-noise ratio, considered in the XMM Cluster Oustkirts Project (X-COP). Our images show the presence of anisotropic features, such as small-scale blobs and filamentary substructures that are located in the outskirts of a number of clusters in the sample. The significance of their detection is established via a bootstrap-based procedure we propose here for the first time. In particular, we present a qualitative comparison with X-ray data for two interesting systems, namely A2029 and RXCJ1825. Our results are in agreement with the features detected in the outskirts of the clusters in the two bands.
机译:通过Sunyaev–Zel’dovich效应对星系团进行成像,是探测团簇内部气体热压力的重要工具,尤其是在X射线观测受到光子统计影响的最外部区域。第一次,我们通过将局部稀疏分量分离的局部参数算法应用于由Planck发布的最新频率图来生成Comptonization参数的图。该算法通过对热粉尘的光谱能量密度和亮点源进行掩蔽的两部分建模,考虑了实际簇数据的属性。由于在每个小波系数的卡方最小化中实现了普朗克光束的去卷积,因此在低信噪比条件下,其鲁棒性得到了提高。我们将此程序应用于由普朗克检测到的具有最高信噪比的12个低红移星系星团,这在XMM集群Oustkirts项目(X-COP)中得到了考虑。我们的图像显示出各向异性特征的存在,例如位于样本中许多簇的郊区的小斑点和丝状亚结构。通过我们在此首次提出的基于引导程序的程序来确定其检测的重要性。特别是,我们对两个有趣的系统A2029和RXCJ1825的X射线数据进行了定性比较。我们的结果与在两个波段的星团郊区检测到的特征一致。

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