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Spectrum of the unresolved cosmic X-ray background: what is unresolved 50?years after its discovery

机译:未解析的宇宙X射线背景的光谱:发现后50年仍未解析的是什么

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Aims. We study the spectral properties of the unresolved cosmic X-ray background (CXRB) in the 1.5–7.0?keV energy band with the aim of providing an observational constraint on the statistical properties of those sources that are too faint to be individually probed. Methods. We made use of the Swift X-ray observation of the Chandra deep field South complemented by the Chandra data. Exploiting the lowest instrument background (Swift) together with the deepest observation ever performed (Chandra) we measured the unresolved emission at the deepest level and with the best accuracy available today. Results. We find that the unresolved CXRB emission can be modeled by a single power law with a very hard photon index Γ?=?0.1 ±?0.7 and a flux of 5-2.6+3.2?erg?s-1?cm-2?deg-2 in the 2.0–10?keV energy band (1σ error). Thanks to the low instrument background of the Swift-XRT, we significantly improved the accuracy with respect to previous measurements. Conclusions. These results point towards a novel ingredient in AGN population synthesis models, namely a positive evolution of the Compton-thick AGN population from local Universe to high redshift.
机译:目的我们研究了在1.5–7.0?keV能带中的未解析宇宙X射线背景(CXRB)的光谱特性,旨在为那些太微弱而无法单独探测的源的统计特性提供观测约束。方法。我们利用对Chandra深场South的Swift X射线观察以及Chandra数据的补充。利用最低的仪器本底(Swift)和有史以来最深的观测(Chandra),我们以最深的水平和当今最高的精度测量了未解析的发射。结果。我们发现,未分解的CXRB发射可以通过具有很硬的光子指数Γ?=?0.1±?0.7和通量为5-2.6 + 3.2?erg?s-1?cm-2?deg的单一幂律来建模。在2.0–10?keV能带中为-2(1σ误差)。由于Swift-XRT的仪器背景低,相对于以前的测量,我们显着提高了准确性。结论。这些结果指出了AGN人口综合模型中的一种新颖成分,即Compton厚AGN人口正从本地宇宙向高红移的正向演化。

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