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对分钟级暂态天体物理中微子源的限制。

Constraints on Minute-Scale Transient Astrophysical Neutrino Sources.

机构信息

Department of Physics and Astronomy, University of Canterbury, Private Bag 4800, Christchurch, New Zealand.

DESY, D-15738 Zeuthen, Germany.

出版信息

Phys Rev Lett. 2019 Feb 8;122(5):051102. doi: 10.1103/PhysRevLett.122.051102.

Abstract

High-energy neutrino emission has been predicted for several short-lived astrophysical transients including gamma-ray bursts (GRBs), core-collapse supernovae with choked jets, and neutron star mergers. IceCube's optical and x-ray follow-up program searches for such transient sources by looking for two or more muon neutrino candidates in directional coincidence and arriving within 100 s. The measured rate of neutrino alerts is consistent with the expected rate of chance coincidences of atmospheric background events and no likely electromagnetic counterparts have been identified in Swift follow-up observations. Here, we calculate generic bounds on the neutrino flux of short-lived transient sources. Assuming an E^{-2.5} neutrino spectrum, we find that the neutrino flux of rare sources, like long gamma-ray bursts, is constrained to <5% of the detected astrophysical flux and the energy released in neutrinos (100 GeV to 10 PeV) by a median bright GRB-like source is <10^{52.5}  erg. For a harder E^{-2.13} neutrino spectrum up to 30% of the flux could be produced by GRBs and the allowed median source energy is <10^{52}  erg. A hypothetical population of transient sources has to be more common than 10^{-5}  Mpc^{-3}  yr^{-1} (5×10^{-8}  Mpc^{-3}  yr^{-1} for the E^{-2.13} spectrum) to account for the complete astrophysical neutrino flux.

摘要

高能中微子发射已被预测为几种短寿命天体瞬变现象,包括伽马射线暴(GRB)、带有阻塞喷流的核心坍缩超新星和中子星合并。IceCube 的光学和 X 射线后续计划通过寻找两个或更多在方向上同时到达的μ中微子候选者来搜索此类瞬变源,并且到达时间间隔在 100 s 以内。测量的中微子警报率与大气背景事件的预期巧合率一致,并且在 Swift 后续观测中没有发现可能的电磁对应物。在这里,我们计算了短寿命瞬变源中微子通量的通用限制。假设 E^{-2.5}中微子能谱,我们发现,像长伽马射线暴这样罕见的源的中微子通量被限制在<5%的已检测到的天体物理通量内,并且由典型的亮 GRB 样源在中微子中释放的能量(100 GeV 到 10 PeV)<10^{52.5}  erg。对于更硬的 E^{-2.13}中微子能谱,高达 30%的通量可以由 GRB 产生,并且允许的典型源能量<10^{52}  erg。假设瞬变源的假设种群比 10^{-5}  Mpc^{-3}  yr^{-1}(E^{-2.13}能谱为 5×10^{-8}  Mpc^{-3}  yr^{-1})更常见,才能解释完整的天体物理中微子通量。

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