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Nuclear Security Applications of Antineutrino Detectors: Current Capabilities and Future Prospects

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arxiv 0908.4338 v1 pith:CBFYY5RU submitted 2009-08-29 nucl-ex

classification nucl-ex
keywords nuclearantineutrinoapplicationsappliednonproliferationadvancesantineutrinosdiscipline
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Antineutrinos are electrically neutral, nearly massless fundamental particles produced in large numbers in the cores of nuclear reactors and in nuclear explosions. In the half century since their discovery, major advances in the understanding of their properties, and in detector technology, have opened the door to a new discipline: Applied Antineutrino Physics. Because antineutrinos are inextricably linked to the process of nuclear fission, many applications of interest are in nuclear nonproliferation. This white paper presents a comprehensive survey of applied antineutrino physics relevant for nonproliferation, summarizes recent advances in the field, describes the overlap of this nascent discipline with other ongoing fundamental and applied antineutrino research, and charts a course for research and development for future applications. It is intended as a resource for policymakers, researchers, and the wider nuclear nonproliferation community.

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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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