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Antineutrino Detectors Remain Impractical for Nuclear Explosion Monitoring

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arxiv 2005.02756 v1 pith:V4M5R3QC submitted 2020-03-27 physics.soc-ph hep-exnucl-exphysics.ins-det

classification physics.soc-phhep-exnucl-exphysics.ins-det
keywords detectorsmonitoringantineutrinocostexistingexplosionslargenuclear
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Fission explosions produce large numbers of antineutrinos. It is occasionally asked whether this distinctive, unshieldable emission could help reveal clandestine nuclear weapon explosions. The practical challenge encountered is that detectors large enough for this application are cost prohibitive, likely on the multi-billion-dollar scale. In this paper, we review several hypothetical use cases for antineutrino detectors as supplements to the seismic, infrasound, hydroacoustic, and airborne radionuclide sensors of the Comprehensive Nuclear-Test-Ban Treaty Organization's International Monitoring System. In each case, if an anti-neutrino detector could be constructed that would compete with existing capabilities, we conclude that the cost would considerably outstrip the value it might add to the existing monitoring network, compared to the significantly lower costs for the same or superior capability.

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  1. Enhancing Angular Sensitivity of Segmented Antineutrino Detectors for Reactor Monitoring

    hep-ex 2026-03 conditional novelty 5.0 of 10

    A Frobenius-norm template-matching algorithm estimates antineutrino direction from neutron-capture patterns in segmented detectors, with an optimal segment size near the mean neutron track length (~70 mm) at low counts.

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