Nature. 2017 Nov 30;551(7682):596-600. doi: 10.1038/nature24459. Epub 2017 Nov 22.
Neutrinos interact only very weakly, so they are extremely penetrating. The theoretical neutrino-nucleon interaction cross-section, however, increases with increasing neutrino energy, and neutrinos with energies above 40 teraelectronvolts (TeV) are expected to be absorbed as they pass through the Earth. Experimentally, the cross-section has been determined only at the relatively low energies (below 0.4 TeV) that are available at neutrino beams from accelerators. Here we report a measurement of neutrino absorption by the Earth using a sample of 10,784 energetic upward-going neutrino-induced muons. The flux of high-energy neutrinos transiting long paths through the Earth is attenuated compared to a reference sample that follows shorter trajectories. Using a fit to the two-dimensional distribution of muon energy and zenith angle, we determine the neutrino-nucleon interaction cross-section for neutrino energies 6.3-980 TeV, more than an order of magnitude higher than previous measurements. The measured cross-section is about 1.3 times the prediction of the standard model, consistent with the expectations for charged- and neutral-current interactions. We do not observe a large increase in the cross-section with neutrino energy, in contrast with the predictions of some theoretical models, including those invoking more compact spatial dimensions or the production of leptoquarks. This cross-section measurement can be used to set limits on the existence of some hypothesized beyond-standard-model particles, including leptoquarks.
中微子相互作用非常微弱,因此穿透力极强。然而,理论上的中微子-核子相互作用截面随着中微子能量的增加而增加,预计能量超过 40 太电子伏特(TeV)的中微子在穿过地球时会被吸收。在实验上,仅在相对较低的能量(低于 0.4 TeV)下确定了截面,这些能量可在来自加速器的中微子束中获得。在这里,我们使用 10784 个高能上向中微子诱发的缪子样本报告了地球对中微子吸收的测量结果。与遵循较短轨迹的参考样本相比,穿过地球的长路径传输的高能中微子通量会减弱。通过对缪子能量和天顶角的二维分布进行拟合,我们确定了 6.3-980 TeV 能量的中微子-核子相互作用截面,比以前的测量值高出一个数量级。测量的截面大约是标准模型预测值的 1.3 倍,与带电和中性电流相互作用的预期相符。我们没有观察到截面随中微子能量的显著增加,这与一些理论模型的预测形成对比,包括那些涉及更紧凑空间维度或产生轻夸克的模型。这种截面测量可用于对一些假设的超越标准模型粒子的存在设置限制,包括轻夸克。