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The XMM-Newton serendipitous survey: VII. The third XMM-Newton serendipitous source catalogue

机译:XMM-牛顿偶然调查:VII。第三个XMM-Newton偶然来源目录

摘要

Context. Thanks to the large collecting area (3 × ∼1500 cm² at 1.5 keV) and wide field of view (30′ across in full field mode) of the X-ray cameras on board the European Space Agency X-ray observatory XMM-Newton, each individual pointing can result in the detection of up to several hundred X-ray sources, most of which are newly discovered objects. Since XMM-Newton has now been in orbit for more than 15 yr, hundreds of thousands of sources have been detected. Aims. Recently, many improvements in the XMM-Newton data reduction algorithms have been made. These include enhanced source characterisation and reduced spurious source detections, refined astrometric precision of sources, greater net sensitivity for source detection, and the extraction of spectra and time series for fainter sources, both with better signal-to-noise. Thanks to these enhancements, the quality of the catalogue products has been much improved over earlier catalogues. Furthermore, almost 50% more observations are in the public domain compared to 2XMMi-DR3, allowing the XMM-Newton Survey Science Centre to produce a much larger and better quality X-ray source catalogue. Methods. The XMM-Newton Survey Science Centre has developed a pipeline to reduce the XMM-Newton data automatically. Using the latest version of this pipeline, along with better calibration, a new version of the catalogue has been produced, using XMM-Newton X-ray observations made public on or before 2013 December 31. Manual screening of all of the X-ray detections ensures the highest data quality. This catalogue is known as 3XMM. Results. In the latest release of the 3XMM catalogue, 3XMM-DR5, there are 565 962 X-ray detections comprising 396 910 unique X-ray sources. Spectra and lightcurves are provided for the 133 000 brightest sources. For all detections, the positions on the sky, a measure of the quality of the detection, and an evaluation of the X-ray variability is provided, along with the fluxes and count rates in 7 X-ray energy bands, the total 0.2-12 keV band counts, and four hardness ratios. With the aim of identifying the detections, a cross correlation with 228 catalogues of sources detected in all wavebands is also provided for each X-ray detection. Conclusions. 3XMM-DR5 is the largest X-ray source catalogue ever produced. Thanks to the large array of data products associated with each detection and each source, it is an excellent resource for finding new and extreme objects.
机译:上下文。由于欧洲航天局X射线天文台XMM-Newton上的X射线摄影机具有大的收集区域(1.5 keV下为3×〜1500cm²,全视野模式下为30英尺),每个单独的指向都可以检测多达数百个X射线源,其中大多数是新发现的对象。由于XMM-Newton现已进入轨道运行超过15年,因此已检测到成千上万个源。目的最近,在XMM-Newton数据约简算法上已进行了许多改进。这些措施包括增强的源特性和减少的杂散源检测,改进的源天文精度,用于源检测的更高的网络灵敏度以及为微弱源提取光谱和时间序列,两者均具有更好的信噪比。由于这些增强,目录产品的质量已比早期目录大大提高。此外,与2XMMi-DR3相比,公共领域的观察量几乎增加了50%,这使得XMM-Newton Survey Science Center可以产生更大,质量更高的X射线源目录。方法。 XMM-Newton调查科学中心开发了一条管道,以自动减少XMM-Newton数据。使用该管道的最新版本以及更好的校准功能,使用了2013年12月31日或之前公开的XMM-Newton X射线观测结果,制作了新目录目录。手动筛选所有X射线检测物确保最高的数据质量。此目录称为3XMM。结果。在3XMM目录的最新版本3XMM-DR5中,存在565 962个X射线检测,包括396 910个唯一X射线源。提供了133 000个最亮光源的光谱和光曲线。对于所有检测,都提供了天空位置,检测质量的量度以及X射线变异性的评估,以及7个X射线能带的通量和计数率,总计0.2- 12 keV带计数和四个硬度比。为了识别检测,还为每个X射线检测提供了与在所有波段中检测到的228种源的目录的互相关。结论。 3XMM-DR5是有史以来生产的最大的X射线源目录。由于每种检测和每种来源都有大量的数据产品,因此它是查找新的极端物体的极佳资源。

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