论文标题

使用局部集成的3-D精制地壳模型,JUNO的预期地球运动信号

Expected geoneutrino signal at JUNO using local integrated 3-D refined crustal model

论文作者

Han, Ran, Li, ZhiWei, Gao, Ruohan, Sun, Yao, Xu, Ya, Xi, Yufei, Jiang, Guangzheng, Wang, Andong, Cheng, Yaping, Sun, Yao, Pang, Jie, Hua, Qi, Wen, Liangjian, Zhan, Liang, Li, Yu-Feng

论文摘要

地球植物是理解地球的放射力和组成的有效工具。尽管在先前的实验中已经观察到地球植物,但是即将到来的实验(例如Juno)对于充分利用其潜力是必要的。地壳贡献的精确预测对于在地理科学查询的背景下解释粒子物理测量至关重要。但是,诸如Juloc和GigJ等现有模型在准确预测地壳贡献方面存在局限性。本文介绍了Juno的新型3-D整合地壳模型Juloci,该模型采用地震,重力,岩石样品和热流数据来精确估算岩石圈的地球素信号。该模型表明,中国南部的铀和th的浓度升高,导致了意外的强烈地球群信号。Juloc-I的准确性以及十年的实验数据相结合,为Juno提供了测试多个地幔模型的机会。一旦运行,Juno就可以验证模型预测并增强地幔测量的精度。总而言之,Juloc-I的提高准确性是为了理解中国南部地壳的地球化学分布的大步迈进,为研究地球通过Geoneutrinos的组成和演变提供了有价值的工具。

Geoneutrinos serve as a potent tool for comprehending the radiogenic power and composition of Earth. Although geoneutrinos have been observed in prior experiments, the forthcoming generation of experiments,such as JUNO, will be necessary for fully harnessing their potential. Precise prediction of the crustal contribution is vital for interpreting particlephysics measurements in the context of geo-scientific inquiries. Nonetheless, existing models such as JULOC and GIGJ have limitations in accurately forecasting the crustal contribution. This paper introduces JULOCI, the novel 3-D integrated crustal model of JUNO, which employs seismic, gravity, rock sample, and heat flow data to precisely estimate the geoneutrino signal of the lithosphere. The model indicates elevated concentrations of uranium and thorium in southern China, resulting in unexpectedly strong geoneutrino signals.The accuracy of JULOC-I, coupled with a decade of experimental data, affords JUNO the opportunity to test multiple mantle models. Once operational, JUNO can validate the model predictions and enhance the precision of mantle measurements. All in all, the improved accuracy ofJULOC-I represents a substantial stride towards comprehending the geochemical distribution of the South China crust, offering a valuable tool for investigating the composition and evolution of the Earth through geoneutrinos.

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