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Atmospheric neutrinos and discovery of neutrino oscillations

机译:大气中微子与中微子振荡的发现

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摘要

Neutrino oscillation was discovered through studies of neutrinos produced by cosmic-ray interactions in the atmosphere. These neutrinos are called atmospheric neutrinos. They are produced as decay products in hadronic showers resulting from collisions of cosmic rays with nuclei in the atmosphere. Electron-neutrinos and muon-neutrinos are produced mainly by the decay chain of charged pions to muons to electrons. Atmospheric neutrino experiments observed zenith-angle and energy dependent deficit of muon-neutrino events. Neutrino oscillations between muon-neutrinos and tau-neutrinos explain these data well. Neutrino oscillations imply that neutrinos have small but non-zero masses. The small neutrino masses have profound implications to our understanding of elementary particle physics and the Universe. This article discusses the experimental discovery of neutrino oscillations.
机译:中微子振荡是通过研究大气中宇宙射线相互作用产生的中微子而发现的。这些中微子称为大气中微子。它们是强子射线阵雨中的衰变产物,这是宇宙射线与大气中原子核碰撞产生的。电子中微子和介子中微子主要是由带电的介子,介子到电子的衰变链产生的。大气中微子实验观察到了μ极中微子事件的天顶角和能量依赖缺陷。介子中微子和τ-中微子之间的中微子振荡很好地解释了这些数据。中微子振荡表明中微子的质量很小,但非零。小中微子质量对我们对基本粒子物理学和宇宙的理解具有深远的意义。本文讨论了中微子振荡的实验发现。

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