论文标题

SPT-SZ调查场中的新鉴定和多波长的特性

New Identifications and Multi-wavelength Properties of Extragalactic Fermi Gamma-Ray Sources in the SPT-SZ Survey Field

论文作者

Zhang, Lizhong, Vieira, Joaquin D., Ajello, Marco, Malkan, Matthew A., Archipley, Melanie A., Capota, Joseph, Foster, Allen, Madejski, Greg

论文摘要

第四次费米大面积望远镜(LAT)目录(4FGL)包含5064 $γ$ - 射线源,其源具有很高的意义,但其中26%的源仍然缺乏其他波长的关联。 SPT-SZ调查是在2008年至2011年之间与南极望远镜(SPT)进行的,涵盖了三毫米波长(MM)带的南部天空的2500 $ \ mathrm {deg^2} $,并用于构建近5000个发射源的目录。在这项研究中,我们介绍了一种新的交叉匹配方案,以搜索使用MM目录的多波长$γ$射线来源的多波长对应物。我们应用泊松概率来评估虚假的虚假关联速率,并比较无线电,MM,近红外和4fgl $γ$ ray源的多波长关联。在SPT-SZ调查领域中,4FGL来源中有85%与MM同行相关。这些MM来源包括94%以前相关的4FGL来源和56%的先前无关的4FGL源。后一组包含40个4FGL源为SPT提供了第一个确定的对应物。几乎所有与SPT相关的4FGL源都可以描述为平面无线电类星体或大麻。我们发现,在考虑完整性和纯度时,MM频段是检测$γ$ ray Blazars的最有效波长。我们还证明,MM频段与$γ$ -Ray乐队的相关性比收音机或X射线频段更好。通过下一代CMB实验,该技术可以扩展到更大的敏感性和更多的天空区域,以进一步完成对剩余未知$γ$ ray blazars的识别。

The fourth Fermi Large Area Telescope (LAT) catalog (4FGL) contains 5064 $γ$-ray sources detected at high significance, but 26% of them still lack associations at other wavelengths. The SPT-SZ survey, conducted between 2008 and 2011 with the South Pole Telescope (SPT), covers 2500 $\mathrm{deg^2}$ of the Southern sky in three millimeter-wavelength (mm) bands and was used to construct a catalog of nearly 5000 emissive sources. In this study, we introduce a new cross-matching scheme to search for multi-wavelength counterparts of extragalactic $γ$-ray sources using a mm catalog. We apply a Poissonian probability to evaluate the rate of spurious false associations and compare the multi-wavelength associations from the radio, mm, near-infrared, and X-ray with 4FGL $γ$-ray sources. In the SPT-SZ survey field, 85% of 4FGL sources are associated with mm counterparts. These mm sources include 94% of previously associated 4FGL sources and 56% of previously unassociated 4FGL sources. The latter group contains 40 4FGL sources for which SPT has provided the first identified counterparts. Nearly all of the SPT-associated 4FGL sources can be described as flat-spectrum radio quasars or blazars. We find that the mm band is the most efficient wavelength for detecting $γ$-ray blazars when considering both completeness and purity. We also demonstrate that the mm band correlates better to the $γ$-ray band than the radio or X-ray bands. With the next generation of CMB experiments, this technique can be extended to greater sensitivities and more sky area to further complete the identifications of the remaining unknown $γ$-ray blazars.

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