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Geo-neutrinos and silicate earth enrichment of U and Th

机译:铀和Th的中微子和硅酸盐土富集

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摘要

The terrestrial distribution of U, Th, and K abundances governs the thermal evolution, traces the differentiation, and reflects the bulk composition of the earth. Comparing the bulk earth composition to chondritic meteorites estimates the net amounts of these radiogenic heat-producing elements available for partitioning to the crust, mantle, and core. Core formation enriches the abundances of refractory lithophile elements, including U and Th, in the silicate earth by ~1.5. Global removal of volatile elements potentially increases this enrichment to ~2.8. The K content of the silicate earth follows from the ratio of K to U. Variable enrichment produces a range of possible heat-producing element abundances in the silicate earth. A model assesses the essentially fixed amounts of U, Th, and K in the approximately closed crust reservoir. Subtracting these sequestered crustal amounts of U, Th, and K from the variable amounts in the silicate earth results in a range of possible mantle allocations, leaving global dynamics and thermal evolution poorly constrained. Terrestrial antineutrinos from β-emitting daughter nuclei in the U and Th decay series traverse the earth with negligible attenuation. The rate at which large subsurface instruments observe these geo-neutrinos depends on the distribution of U and Th relative to the detector. Geo-neutrino observations with sensitivity to U and Th in the mantle are able to estimate silicate earth enrichment, leading to a more complete understanding of the origin, accretion, differentiation, and thermal history of the planet.
机译:U,Th和K丰度的地球分布控制着热演化,追踪了差异,并反映了地球的整体组成。将块状地球陨石与块状陨石进行比较,可以估算出可用于划分地壳,地幔和岩心的这些放射源生热元素的净含量。岩心形成使硅酸盐土中难熔的亲石元素(包括U和Th)的含量增加了约1.5。整体去除挥发性元素可能会将这种富集提高到〜2.8。硅酸盐土中的K含量遵循K与U之比。可变富集会在硅酸盐土中产生一系列可能的发热元素丰度。模型评估了近似封闭的地壳储层中U,Th和K的基本固定量。从硅酸盐土中的可变量中减去这些螯合的U,Th和K地壳量会导致一系列可能的地幔分配,从而使整体动力学和热演化受到的约束非常有限。 U和Th衰变序列中来自发射β的子核的地面抗中微子穿过地球的衰减很小。大型地下仪器观测这些中微子的速率取决于U和Th相对于探测器的分布。对地幔中U和Th敏感的地中微子观测能够估算硅酸盐地球的富集程度,从而使人们对行星的起源,吸积,分化和热史有了更全面的了解。

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