论文标题

板上EPIC-PN摄像头的不考虑背景的分析XMM-Newton

Analysis of the unconcentrated background of the EPIC-pn camera on board XMM-Newton

论文作者

Marelli, Martino, Molendi, Silvano, Rossetti, Mariachiara, Gastaldello, Fabio, Salvetti, David, De Luca, Andrea, Bartalucci, Iacopo, Kühl, Patrick, Esposito, Paolo, Ghizzardi, Simona, Tiengo, Andrea

论文摘要

我们对XMM Newton上EPIC/PN相机背景的理解是不完整的。这会影响扩展来源的研究,并可能影响未来X射线任务背景的预测。我们根据对有史以来最大的数据集的分析提供了新的结果。我们专注于Epic/PN背景的不集体组件 - 据说与宇宙射线与望远镜相互作用有关。我们发现,PN检测器的视图区域实际上暴露在天空上。从天空污染中清除后,不考虑的背景不会显示出显着的空间变化,其时间行为与太阳周期抗相关。我们发现在EPIC/PN和MOS2摄像机中检测到的不考虑的背景之间存在非常紧密的线性相关性:这允许根据MOS2数据对PN对PN的不合理背景进行正确的评估,从而避免使用污染的PN区域的使用(如往常)。我们发现PN不合理的背景与质子通量之间的紧密线性相关性与SOHO/Ephin测量的630-970 MEV能量带中的质子通量。通过这种关系,我们量化了宇宙射线相互作用对PN不合时宜的背景的贡献,我们找到了第二个来源,该源有助于PN的显着分数(30%-70%)的PN不合理的背景,该背景不会随时间而变化,并且大致相同。 CXB的硬X射线光子满足了该新组件的所有已知特性。我们的发现为雅典娜的模拟结果提供了重要的观察确认。

Our understanding of the background of the EPIC/pn camera onboard XMM-Newton is incomplete. This affects the study of extended sources and can influence the predictions of the background of future X-ray missions. We provide new results based on the analysis of the largest data set ever used. We focus on the unconcentrated component of the EPIC/pn background - supposedly related to cosmic rays interacting with the telescope. We find that the out-field of view region of the pn detector is actually exposed to the sky. After cleaning from the sky contamination, the unconcentrated background does not show significant spatial variations and its time behaviour is anti-correlated with the solar cycle. We find a very tight, linear correlation between unconcentrated backgrounds detected in the EPIC/pn and MOS2 cameras: this permits the correct evaluation of the pn unconcentrated background of each exposure on the basis of MOS2 data, avoiding the use (as usual) of the contaminated pn regions. We find a tight, linear correlation between the pn unconcentrated background and the proton flux in the 630-970 MeV energy band measured by SOHO/EPHIN. Through this relationship we quantify the contribution of cosmic ray interactions to the pn unconcentrated background and we find a second source which contributes to the pn unconcentrated background for a significant fraction (30%-70%), that does not vary with time and is roughly isotropic. Hard X-ray photons of the CXB satisfy all the known properties of this new component. Our findings provide an important observational confirmation of simulation results on ATHENA.

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