首页> 外文期刊>The Astrophysical journal >EXTRAGALACTIC STAR-FORMING GALAXIES WITH HYPERNOVAE AND SUPERNOVAE AS HIGH-ENERGY NEUTRINO AND GAMMA-RAY SOURCES: THE CASE OF THE 10 TeV NEUTRINO DATA
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EXTRAGALACTIC STAR-FORMING GALAXIES WITH HYPERNOVAE AND SUPERNOVAE AS HIGH-ENERGY NEUTRINO AND GAMMA-RAY SOURCES: THE CASE OF THE 10 TeV NEUTRINO DATA

机译:超新星和超新星作为高能中微子和γ射线源的超星系星系:10 TeV中微子数据的例子

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In light of the latest IceCube data, we discuss the implications of the cosmic ray (CR) energy input from hypernovae (HNe) and supernovae (SNe) into the universe, and their propagation in the hosting galaxies and galaxy clusters or groups. The magnetic confinement of CRs in these environments may lead to efficient neutrino production via pp collisions, resulting in a diffuse neutrino spectrum extending from PeV down to 10 TeV energies, with a spectrum and flux level compatible with that recently reported by IceCube. If the diffuse 10 TeV neutrino background largely comes from such CR reservoirs, the corresponding diffuse γ-ray background should be compatible with the recent Fermi data. In this scenario, the CR energy input from HNe should be dominant over that of SNe, implying that the starburst scenario does not work if the SN energy budget is a factor of two larger than the HN energy budget. Thus, this strong case scenario can be supported or ruled out in the near future.
机译:根据最新的IceCube数据,我们讨论从超新星(HNe)和超新星(SNe)进入宇宙的宇宙射线(CR)能量输入的含义,以及它们在宿主星系和星系团或星团中的传播。在这些环境中,CR的磁限制可能会导致通过pp碰撞产生有效的中微子,从而导致中微子的弥散谱从PeV扩展到10 TeV能量,其谱和通量级与IceCube最近报道的兼容。如果弥散的10 TeV中微子背景主要来自此类CR储层,则相应的弥散γ射线背景应与最近的费米数据兼容。在这种情况下,来自HNe的CR能量输入应比SNe占主导地位,这意味着如果SN能量预算比HN能量预算大两倍,则星爆方案将不起作用。因此,可以在不久的将来支持或排除这种强大的情况。

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