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Atmospheric Neutrino Oscillations for Earth Tomography

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arxiv 1511.05154 v2 pith:KUOBUYUO submitted 2015-11-16 hep-ph hep-exphysics.geo-ph

classification hep-phhep-exphysics.geo-ph
keywords earthneutrinooscillationatmosphericdensityexperimentsincludingoscillations
verification ladder T0 review T1 audit T2 compute T3 formal
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Modern proposed atmospheric neutrino oscillation experiments, such as PINGU in the Antarctic ice or ORCA in Mediterranean sea water, aim for precision measurements of the oscillation parameters including the ordering of the neutrino masses. They can, however, go far beyond that: Since neutrino oscillations are affected by the coherent forward scattering with matter, neutrinos can provide a new view on the interior of the earth. We show that the proposed atmospheric oscillation experiments can measure the lower mantle density of the earth with a precision at the level of a few percent, including the uncertainties of the oscillation parameters and correlations among different density layers. While the earth's core is, in principle, accessible by the angular resolution, new technology would be required to extract degeneracy-free information.

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  1. Estimating the sensitivity of the IceCube Upgrade to probe the interior of the Earth using atmospheric neutrino oscillations

    hep-ex 2026-08 conditional novelty 5.0 of 10

    A Monte Carlo sensitivity study projects that the IceCube Upgrade with DeepCore can detect Earth matter effects at 5.5-7.1 sigma, reject a uniform Earth at 2.4 sigma, and measure the Earth's mass to about 10% precision.

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