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首页> 外文期刊>The Astrophysical journal >LOWER LIMITS ON THE ANISOTROPY OF THE EXTRAGALACTIC GAMMA-RAY BACKGROUND IMPLIED BY THE 2FGL AND 1FHL CATALOGS
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LOWER LIMITS ON THE ANISOTROPY OF THE EXTRAGALACTIC GAMMA-RAY BACKGROUND IMPLIED BY THE 2FGL AND 1FHL CATALOGS

机译:2FGL和1FHL目录隐含的河外伽马射线背景各向异性的下限

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摘要

In principle, the angular anisotropy in the extragalactic gamma-ray background (EGRB) places severe constraints upon putative populations of unresolved gamma-ray point sources. Existing estimates of the EGRB anisotropy have been constructed by excising known point sources, e.g., taken from the First or Two?Year Fermi-LAT Source Catalog (1FGL or 2FGL, respectively) and statistically analyzing the residual gamma-ray sky maps. We perform an independent check of the EGRB anisotropy limits by comparing the values obtained from the 1FGL-masked sky maps to the signal implied by sources that lie below the 1FGL detection threshold in the more sensitive 2FGL and 1FHL (First Fermi-LAT catalog of 10 GeV sources). As such, our analysis provides an internal consistency check of implications for source counts and spectral index distributions of gamma-ray bright active galactic nuclei obtained from Fermi-LAT data. Based on this, we find evidence for substantially larger anisotropies than those previously reported at energies above 5 GeV, where BL Lac objects are likely to provide the bulk of their contribution to the EGRB. This uncertainty in the EGRB anisotropy cautions against using it as an independent constraint for the high-redshift gamma-ray universe. Moreover, this would suggest that contrary to previous claims, smooth extensions of the resolved point-source population may be able to simultaneously explain both the isotropic and anisotropic components of the EGRB.
机译:原则上,银河系外伽马射线背景(EGRB)中的角度各向异性对未解析的伽马射线点源的假定种群施加了严格的约束。 EGRB各向异性的现有估算是通过切除已知的点源而构建的,例如从第一或第二年费米-拉特源目录(分别为1FGL或2FGL)中获取并统计分析剩余的伽马射线天空图。通过比较从1FGL遮罩的天空图获得的值与更敏感的2FGL和1FHL中位于1FGL检测阈值以下的信号源所隐含的信号,我们对EGRB各向异性极限进行了独立检查(第一Fermi-LAT目录> 10 GeV来源)。这样,我们的分析为从费米-拉特数据获得的伽马射线亮活跃银河核的源计数和光谱指数分布的含义提供了内部一致性检查。基于此,我们发现证据表明,各向异性比以前在5 GeV以上的能量大得多,而BL Lac物体很可能会为EGRB提供大部分贡献。 EGRB各向异性的这种不确定性警告不要将其用作高红移伽马射线宇宙的独立约束。此外,这表明与先前的权利要求相反,解析的点源总体的平滑扩展可能能够同时解释EGRB的各向同性和各向异性。

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