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Neutrino geophysics with KamLAND and future prospects

机译:Kamland的中微子地球物理学和未来前景

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The Kamioka liquid scintillator anti-neutrino detector (KamLAND) is a low-energy and low-background neutrino detector which could be a useful probe for determining the U and Th abundances of the Earth. We constructed a model of the Earth in order to evaluate the rate of geologically produced anti-neutrinos (geoneutrinos) detectable by KamLAND. We found that KamLAND can be used to determine the absolute abundances of U and Th in the Earth with accuracy sufficient for placing important constraints on Earth's accretion and succeeding thermal history. Within the uncertainty of the measurement, the present observation of geoneutrinos with KamLAND is consistent with our model prediction based on the bulk silicate Earth (BSE) composition. If a neutrino detector were to be built in Hawaii, where effects of the continental crust would be negligible, it could be used to estimate the U and Th content in the lower mantle and the core. Our calculation of the geoneutrino event rate on the Earth's surface indicates that geoneutrino observation can provide key information for testing the current models of the U and Th content and distribution in the Earth. (C) 2007 Elsevier B.V All rights reserved.
机译:Kamioka液体闪烁体反中微子探测器(KamLAND)是一种低能量和低背景的中微子探测器,可能是确定地球U和Th丰度的有用探针。我们建立了一个地球模型,以评估KamLAND可探测的地质产生的反中微子(geoneutrinos)的比率。我们发现,KamLAND可用于确定地球上U和Th的绝对丰度,其准确度足以对地球的吸积和后续的热史施加重要限制。在测量的不确定性范围内,目前用KamLAND观测的中微子与我们基于整体硅酸盐地球(BSE)成分的模型预测相一致。如果要在夏威夷建造一个中微子探测器,在该大陆壳的影响可以忽略不计,那么它可以用来估算下地幔和岩心中的U和Th含量。我们对地球表面上的中微子事件发生率的计算表明,中微子观测可以为测试当前地球上U和Th含量和分布模型提供关键信息。 (C)2007 Elsevier B.V保留所有权利。

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