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Borexino: geo-neutrino measurement at Gran Sasso, Italy

机译:Borexino:意大利格兰萨索的中微子测量

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Geo-neutrinos, electron anti-neutrinos produced in β -decays of naturally occurring radioactive isotopes in the Earth, are a unique direct probe of our planet’s interior. After a brief introduction of the geo-neutrinos’ properties and of the main aims of their study, we discuss the features of a detector which has recently provided breakthrough achievements in the field, Borexino, a massive, calorimetric liquid scintillator detector installed at the underground Gran Sasso Laboratory. With its unprecedented radiopurity levels achieved in the core of the detection medium, it is the only experiment in operation able to study in real time solar neutrino interactions in the challenging sub-MeV energy region. Its superior technical properties allowed Borexino also to provide a clean detection of terrestrial neutrinos. Therefore, the description of the characteristics of the detected geo-neutrino signal and of the corresponding geological implications are the main core of the discussion contained in this work.
机译:地球中微子是地球上自然发生的放射性同位素的β衰变产生的电子反中微子,是对我们星球内部的独特直接探测。在简要介绍了地中微子的性质及其研究的主要目的之后,我们讨论了最近在该领域取得突破性进展的一种探测器的特性,即安装在地下的大型量热液体闪烁体探测器Borexino。格兰萨索实验室。由于其在检测介质的核心中达到了前所未有的放射纯度水平,这是唯一一项能够实时研究具有挑战性的亚MeV能量区域中太阳中微子相互作用的实验。 Borexino具有卓越的技术性能,因此也可以提供干净的地面中微子检测。因此,对探测到的中微子信号特征的描述以及相应的地质意义是这项工作中讨论的主要核心。

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