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Suzaku measurement of Abell 2204's intracluster gas temperature profile out to 1800?kpc

机译:朱雀测量Abell 2204的簇内气体温度曲线至1800?kpc

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Context. Measurements of intracluster gas temperatures out to large radii, where much of the galaxy cluster mass resides, are important for using clusters for precision cosmology and for studies of cluster physics. Previous attempts to measure robust temperatures at cluster virial radii have failed. Aims. The goal of this work is to measure the temperature profile of the very relaxed symmetric galaxy cluster Abell 2204 out to large radii, possibly reaching the virial radius. Methods. Taking advantage of its low particle background due to its low-Earth orbit, Suzaku data are used to measure the outer temperature profile of Abell 2204. These data are combined with Chandra and XMM-Newton data of the same cluster to make the connection to the inner regions, unresolved by Suzaku, and to determine the smearing due to Suzaku's point spread function. Results. The temperature profile of Abell 2204 is determined from 10kpc to 1800kpc, close to an estimate of r200 (the approximation to the virial radius). The temperature rises steeply from below 4keV in the very center up to more than 8keV in the intermediate range and then decreases again to about 4keV at the largest radii. Varying the measured particle background normalization artificially by 10% does not change the results significantly. Several additional systematic effects are quantified, e.g., those due to the point spread function and astrophysical fore- and backgrounds. Predictions for outer temperature profiles based on hydrodynamic simulations show good agreement. In particular, we find the observed temperature profile to be slightly steeper but consistent with a drop of a factor of 0.6 from 0.3 r200 to r200, as predicted by simulations. Conclusions. Intracluster gas temperature measurements up to r200 seem feasible with Suzaku, after a careful analysis of the different background components and the effects of the point spread function. Such measurements now need to be performed for a statistical sample of clusters. The result obtained here indicates that numerical simulations capture the intracluster gas physics well in cluster outskirts. Key words: X-rays: galaxies: clusters - galaxies: clusters: individual: Abell 2204
机译:上下文。测量星系团内部气体温度到大半径(银河团团的大部分都位于其中)对于使用星团进行精密宇宙学和星团物理学研究非常重要。先前在簇病毒半径下测量坚固温度的尝试失败了。目的这项工作的目标是测量非常松弛的对称星系星团Abell 2204的温度分布,使其达到大半径,并可能达到病毒半径。方法。利用其低地球轨道带来的低粒子背景优势,Suzaku数据用于测量Abell 2204的外部温度分布。这些数据与同一个星团的Chandra和XMM-Newton数据组合在一起,从而建立了与朱雀无法解决的内部区域,并确定由于朱雀的点扩散功能造成的拖影。结果。 Abell 2204的温度曲线确定为10kpc至1800kpc,接近估计值r200(近似于病毒半径)。温度从最中心的4keV以下急剧上升到中间范围的8keV以上,然后在最大半径处再次下降到大约4keV。人工将测量的粒子背景归一化变化10%不会显着改变结果。量化了一些其他系统效果,例如,由于点扩展功能以及天体物理前景色和背景而产生的效果。基于流体动力学模拟的外部温度曲线预测显示出良好的一致性。尤其是,我们发现观测到的温度曲线略陡,但与从0.3 r200到r200的0.6因子下降相吻合,正如模拟预测的那样。结论。在仔细分析了不同的背景成分和点扩散函数的影响之后,使用朱雀将簇内气体温度测量到r200似乎是可行的。现在需要对群集的统计样本执行此类测量。此处获得的结果表明,数值模拟很好地捕获了集散郊区的集聚内气体物理。关键词:X射线:星系:团簇-星系:团簇:个人:阿贝尔2204

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