论文标题
TEV弥漫性宇宙中微子光谱和天体中微子来源的性质
The TeV Diffuse Cosmic Neutrino Spectrum and the Nature of Astrophysical Neutrino Sources
论文作者
论文摘要
宇宙中微子的弥漫性通量已通过Icecube观测站从TEV到PEV能量测量。我们表明,在较低能量,TEV和Sub-TEV上,这种通量的表征得到了改进,以独立的方式揭示了有关天体物理中微子源性质的重要信息。最重要的是,它可以证实目前的中微子源于光学厚至GEV-TEV $γ$ rays的宇宙环境。如果在TEV地区观察到更陡峭甚至不间断的中微子力量法,那么这一结论将不可避免。在这样的$γ$ - 摩擦的来源中,不可避免地会伴随宇宙中微子的$γ$ - 将降低到MEV-GEV能量。伴随宇宙中微子伴随的级联$γ$ - 射线通量不应超过观察到的弥散性$γ$ ray背景的要求,对来源中辐射场的峰值能量和密度构成限制。我们受现有数据启发的计算表明,观察到的弥漫性MEV-GEV $γ$ ray背景的一小部分可能是由中微子来源造成的,具有强烈的辐射场,这些辐射场掩盖了伴随中微子伴随的高能$γ$ ray-ray发射。
The diffuse flux of cosmic neutrinos has been measured by the IceCube Observatory from TeV to PeV energies. We show that an improved characterization of this flux at the lower energies, TeV and sub-TeV, reveals important information on the nature of the astrophysical neutrino sources in a model-independent way. Most significantly, it could confirm the present indications that neutrinos originate in cosmic environments that are optically thick to GeV-TeV $γ$-rays. This conclusion will become inevitable if a steeper or even uninterrupted neutrino power law is observed in the TeV region. In such $γ$-ray-obscured sources, the $γ$-rays that inevitably accompany cosmic neutrinos will cascade down to MeV-GeV energies. The requirement that the cascaded $γ$-ray flux accompanying cosmic neutrinos should not exceed the observed diffuse $γ$-ray background, puts constraints on the peak energy and density of the radiation fields in the sources. Our calculations inspired by the existing data suggest that a fraction of the observed diffuse MeV-GeV $γ$-ray background may be contributed by neutrino sources with intense radiation fields that obscure the high-energy $γ$-ray emission accompanying the neutrinos.