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LOWER BOUND ON THE COSMIC TeV GAMMA-RAY BACKGROUND RADIATION

机译:宇宙TeV伽玛射线背景辐射的下界

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The Fermi gamma-ray space telescope has revolutionized our understanding of the cosmic gamma-ray background radiation in the GeV band. However, investigation on the cosmic TeV gamma-ray background radiation still remains sparse. Here, we report the lower bound on the cosmic TeV gamma-ray background spectrum placed by the cumulative flux of individual detected extragalactic TeV sources including blazars, radio galaxies, and starburst galaxies. The current limit on the cosmic TeV gamma-ray background above 0.1 TeV is obtained as 2.8?×?10?8(E/100 GeV)?0.55 exp(?E/2100GeV)[GeV cm?2 s?1 sr?1]??E2dN/dE??1.1?×?10?7(E/100 GeV)?0.49 [GeV cm?2 s?1 sr?1], where the upper bound is set by requirement that the cascade flux from the cosmic TeV gamma-ray background radiation can not exceed the measured cosmic GeV gamma-ray background spectrum. Two nearby blazars, Mrk?421 and Mrk?501, explain ~70% of the cumulative background flux at 0.8–4 TeV, while extreme blazars start to dominate at higher energies. We also provide the cumulative background flux from each population, i.e., blazars, radio galaxies, and starburst galaxies which will be the minimum requirement for their contribution to the cosmic TeV gamma-ray background radiation.
机译:费米伽马射线太空望远镜彻底改变了我们对GeV波段宇宙伽马射线背景辐射的理解。但是,对宇宙TeV伽马射线背景辐射的研究仍然很少。在这里,我们报告了宇宙TeV伽马射线背景光谱的下限,该范围是由单个探测到的银河外TeV来源(包括大火星,射电星系和星爆星系)的累积通量引起的。超过0.1 TeV的宇宙TeV伽马射线背景的电流极限为2.8?×?10?8(E / 100 GeV)?0.55 exp(?E / 2100GeV)[GeV cm?2 s?1 sr?1 ]?<?E2dN / dE?<?1.1?×?10?7(E / 100 GeV)?0.49 [GeV cm?2 s?1 sr?1],上限由级联磁通的要求来设定来自宇宙TeV的伽马射线背景辐射不能超过测得的宇宙GeV伽马射线背景光谱。附近的两个杂波,Mrk?421和Mrk?501,在0.8-4 TeV时解释了约70%的累积本底通量,而极端的杂波在较高能量下开始占主导地位。我们还提供了来自每个种群的累积本底通量,即火星,射电星系和星暴星系,这是它们对宇宙TeVγ射线背景辐射的最低要求。

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