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The standard model of particle physics. Neutrino oscillations

机译:粒子物理学的标准模型。中微子振荡

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摘要

The Standard Model (SM) of Particle Physics was tested to great precision by experiments at the highest energy colliders (LEP, Hera, Tevatron, Slac). The only missing particle is the Higgs boson, which will be the first particle to be searched for at the new Large Hadron Collider (LHC) at CERN. The SM anticipated that there are 3 types of left handed neutrinos. Experiments on atmospheric and solar neutrinos (made in Japan, Italy, Canada, Russia and the US) have shown the existence of neutrino oscillations, which imply that neutrinos have very small mass differences and violate the conservation of individual leptonic numbers. Neutrino oscillations were verified in long baseline neutrino experiments (in Japan and in the USA): and cosmology has given reasonably precise indications on the sum of the neutrino masses. In this paper will be summarized some of the main properties of the SM and some of the main results obtained in the field and the experiments in preparation. Some of the main open questions will be briefly discussed.
机译:通过在最高能量对撞机(LEP,Hera,Tevatron,Slac)上进行的实验,对粒子物理的标准模型(SM)进行了高精度测试。唯一缺失的粒子是希格斯玻色子,它将是欧洲核子研究组织新的大型强子对撞机(LHC)首次搜索到的粒子。 SM预计有3种左手中微子。大气和太阳中微子(在日本,意大利,加拿大,俄罗斯和美国制造)的实验表明存在中微子振荡,这表明中微子的质量差异很小,并且违反了各个轻子数的守恒。中微子振荡在长期的中微子实验中得到了验证(在日本和美国):宇宙学对中微子的总和给出了相当精确的指示。本文将总结SM的一些主要特性,以及在现场和准备实验中获得的一些主要结果。我们将简要讨论一些主要的开放性问题。

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