论文标题
QCD动力学和超晶状体物理中微子通量对超高能量中微子数据的描述的含义
Implications of the QCD dynamics and a Super-Glashow astrophysical neutrino flux on the description of ultrahigh energy neutrino data
论文作者
论文摘要
中微子望远镜中观察到的事件数量取决于地球中的中微子通量,它们在越过地球时的吸收以及它们在检测器中的相互作用。在本文中,我们研究了QCD动力学对高能的影响对通过地球中微子传播过程中吸收概率平均非弹性和角度依赖性的能量依赖性,以及在确定入射天文学中微子滤光片的性能中。此外,考虑到QCD动力学的不同场景,并假设存在假设的超级 - Glashow通量,估计ICECUBE和ICECUBE -GEN2的事件数量是估计的,该场景在Glashow共振上方的能量达到峰值。
The number of events observed in neutrino telescopes depends on the neutrino fluxes in the Earth, their absorption while crossing the Earth and their interaction in the detector. In this paper, we investigate the impact of the QCD dynamics at high energies on the energy dependence of the average inelasticity and angular dependence of the absorption probability during the neutrino propagation through the Earth, as well in the determination of the properties of the incident astrophysical neutrino flux. Moreover, the number of events at the IceCube and IceCube - Gen2 are estimated considering different scenarios for the QCD dynamics and assuming the presence of a hypothetical Super - Glashow flux, which peaks for energies above the Glashow resonance.