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Antineutrino Geophysics with Liquid Scintillator Detectors

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arxiv nucl-ex/9710001 v2 pith:GC3OHZX5 submitted 1997-10-15 nucl-ex hep-exphysics.geo-ph

classification nucl-exhep-exphysics.geo-ph
keywords antineutrinothoriumuraniumcrustdetectorsearthaboveabundance
verification ladder T0 review T1 audit T2 compute T3 formal
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Detecting the antineutrinos emitted by the decay of radioactive elements in the mantle and crust could provide a direct measurement of the total abundance of uranium and thorium in the Earth. In calculating the antineutrino flux at specific sites, the local geology of the crust and the background from the world's nuclear power reactors are important considerations. Employing a global crustal map, with type and thickness data, and using recent estimates of the uranium and thorium distribution in the Earth, we calculate the antineutrino event rate for two new neutrino detectors. We show that spectral features allow terrestrial antineutrino events to be identified above reactor antineutrino backgrounds and that the uranium and thorium contributions can be separately determined.

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  1. New calculation of the geo-neutrino energy spectrum and its implication

    hep-ph 2024-12 conditional novelty 6.0 of 10

    A new geo-neutrino flux calculation lowers predicted IBD yields by 3.47% for uranium-238 and 9.00% for thorium-232, changing fitted U/Th event rates by 10-20%.

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