论文标题

X射线Energies看到的$γ$ ray天空II:未识别的伽玛射线来源中的费米bl lac对象的迅速狩猎

The $γ$-ray sky seen at X-ray energies II: the Swift hunt of Fermi BL Lac objects among unidentified gamma-ray sources

论文作者

Marchesini, E. J., Paggi, A., Massaro, F., Masetti, N., D'Abrusco, R., Andruchow, I.

论文摘要

费米大面积望远镜检测到的所有来源中,近50%被归类为Blazars或Blazar候选者,这是最难以捉摸的活动星系之一。还可以隐藏在未鉴定或未相关的$γ$射线来源(UGS)的样本中,这些货物构成迄今为止检测到的所有伽马射线源的三分之一。我们最近确认,BL LAC子类的大部分Fermi Blazars具有X射线对应物。使用BL LAC训练集的X射线属性并将其与档案多频信息相结合,我们旨在搜索可能在其$γ$ ray-ray-ray-ray-ray-race位置不确定性区域内具有BL LAC源的UGS。我们减少并分析了327个UGS所选样品的快速X射线观测值。然后,我们比较了在尖端磁场中检测到的所有来源的X射线通量和硬度比与已知的费米BL lac的X射线。我们发现至少有一个X射线源位于$γ$射线的位置不确定性以95%的置信度下,223个UGS和分析的所有领域中总计464个X射线源。其中很大一部分的X射线特性最终与无线电,红外和光学信息结合在一起,展示了BL LAC多频行为,从而使我们能够选择高信心BL LAC候选者;最近在我们的光谱运动中观察到了其中一些,这证实了它们的性质。我们发现,在50个X射线源中,通过光谱法被确认为BL LAC,12不显示规范的中红外或无线电BL LAC。这表明选择X射线BL LAC候选物是在费米UGS中找到新的对应物的强大方法。最后,我们指出了32个Swift/XRT候选候选者与Fermi UGS的样本,这些样本很可能是Bl lac对象。

Nearly 50% of all sources detected by the Fermi Large Area Telescope are classified as blazars or blazar candidates, one of the most elusive classes of active galaxies. Additional blazars can also be hidden within the sample of unidentified or unassociated $γ$-ray sources (UGSs) that constitute about one-third of all gamma-ray sources detected to date. We recently confirmed that the large majority of Fermi blazars of the BL Lac subclass have an X-ray counterpart. Using the X-ray properties of a BL Lac training set and combining these with archival multifrequency information, we aim to search for UGSs that could have a BL Lac source within their $γ$-ray positional uncertainty regions. We reduced and analyzed the Swift X-ray observations of a selected sample of 327 UGSs. We then compared the X-ray fluxes and hardness ratios of all sources detected in the pointed fields with those of known Fermi BL Lacs. We find at least one X-ray source, lying within the $γ$-ray positional uncertainty at 95% confidence level, for 223 UGSs and a total of 464 X-ray sources in all fields analyzed. The X-ray properties of a large fraction of them, eventually combined with radio, infrared, and optical information, exhibit BL Lac multi-frequency behavior, thus allowing us to select high-confidence BL Lac candidates; some of them were recently observed during our optical spectroscopic campaign which confirmed their nature. We find that out of 50 X-ray sources that were confirmed as BL Lacs through optical spectroscopy, 12 do not show canonical mid-infrared or radio BL Lac properties. This indicates that the selection of X-ray BL Lac candidates is a strong method to find new counterparts within Fermi UGSs. Finally, we pinpoint a sample of 32 Swift/XRT candidate counterparts to Fermi UGSs that are most likely BL Lac objects.

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