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Geoneutrinos

机译:中微子

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摘要

Neutrino geophysics is an emerging interdisciplinary field with the potential to map the abundances and distribution of radiogenic heat sources in the continental crust and deep Earth. To date, data from two different experiments quantify the amount of Th and U in the Earth and begin to put constraints on radiogenic power in the Earth available for driving mantle convection and plate tectonics. New improved detectors are under construction or in planning stages. Critical testing of compositional models of the Earth requires integrating geoneutrino and geological observations. Such tests will lead to significant constraints on the absolute and relative abundances of U and Th in the continents. High radioactivity in continental crust puts limits on land-based observatories' capacity to resolve mantle models with current detection methods. Multiple-site measurement in oceanic areas away from continental crust and nuclear reactors offers the best potential to extract mantle information. Geophysics would benefit from directional detection and the detectability of electron antineutrinos from potassium decay.
机译:中微子地球物理学是一个新兴的跨学科领域,具有绘制大陆地壳和深地球中放射源热源的丰度和分布的潜力。迄今为止,来自两个不同实验的数据量化了地球上Th和U的量,并开始限制地球上可用于驱动地幔对流和板块构造的放射源功率。新的改进型探测器正在建设中或计划中。关键的地球组成模型测试需要整合中微子和地质观测。这样的测试将严重限制大陆上U和Th的绝对和相对丰度。大陆壳的高放射性限制了陆上天文台使用当前探测方法解析地幔模型的能力。在远离大陆壳和核反应堆的海洋区域中进行多站点测量提供了提取地幔信息的最佳潜力。地球物理将受益于定向检测和钾衰变对电子中微子的可检测性。

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