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High-energy neutrino interaction physics with IceCube

机译:IceCube的高能中微子相互作用物理学

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Although they are best known for studying astrophysical neutrinos, neutrino telescopes like IceCube can study neutrino interactions, at energies far above those that are accessible at accelerators. In this writeup, I present two IceCube analyses of neutrino interactions at energies far above 1 TeV. The first measures neutrino absorption in the Earth, and, from that determines the neutrino-nucleon cross-section at energies between 6.3 and 980 TeV. We find that the cross-sections are 1.30~(+0.21)_(-0.19)(stat.)~(+0.39)_(-0.43)(syst.) times the Standard Model crosssection. We also present a measurement of neutrino inelasticity, using ν_(μ)charged-current interactions that occur within IceCube. We have measured the average inelasticity at energies from 1 TeV to above 100 TeV, and found that it is in agreement with the Standard Model expectations. We have also performed a series of fits to this track sample and a matching cascade sample, to probe aspects of the astrophysical neutrino flux, particularly the flavor ratio.
机译:尽管它们以研究天体中微子而闻名,但像IceCube这样的中微子望远镜却可以研究中微子的相互作用,其能量远高于加速器所能达到的能量。在本文中,我介绍了能量远高于1 TeV时中微子相互作用的两个IceCube分析。第一个测量地球上中微子的吸收,然后确定能量在6.3至980 TeV之间的中微子核子截面。我们发现横截面是标准模型横截面的1.30〜(+0.21)_(-0.19)(stat。)〜(+0.39)_(-0.43)(syst。)倍。我们还使用在IceCube中发生的ν_(μ)电荷-电流相互作用,对中微子的无弹性进行了测量。我们测量了从1 TeV到高于100 TeV的能量的平均无弹性,发现它与标准模型的预期一致。我们还对该轨迹样本和匹配的级联样本进行了一系列拟合,以探究天体中微子通量的各个方面,尤其是风味比。

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