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Nu Tools: Exploring Practical Roles for Neutrinos in Nuclear Energy and Security

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arxiv 2112.12593 v1 pith:K5UKMCJT submitted 2021-12-20 hep-ph hep-exnucl-ex

classification hep-phhep-exnucl-ex
keywords nuclearreportsecurityenergyneutrinofindingsneutrinosapplication
verification ladder T0 review T1 audit T2 compute T3 formal

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For decades, physicists have used neutrinos from nuclear reactors to advance basic science. These pursuits have inspired many ideas for application of neutrino detectors in nuclear energy and security. While developments in neutrino detectors are now making some of these ideas technically feasible, their value in the context of real needs and constraints has been unclear. This report seeks to help focus the picture of where neutrino technology may find practical roles in nuclear energy and security. This report is the final product of the Nu Tools study, commissioned in 2019 by the DOE National Nuclear Security Administration (NNSA) Office of Defense Nuclear Nonproliferation Research and Development (DNN R&D). The study was conducted over two years by a group of neutrino physicists and nuclear engineers. A central theme of the study and this report is that useful application of neutrinos will depend not only on advancing physics and technology but also on understanding the needs and constraints of potential end-users. The Study Approach emphasized broad end-user engagement. The major effort, undertaken from May to December 2020, was a series of engagements with the wider nuclear energy and security communities. Interviews with 41 experts revealed points of common understanding, which this report captures in three Cross-Cutting Findings, a Framework for Evaluating Utility, and seven Use Case Findings. The report concludes with two Recommendations. The findings and recommendations are summarized below. The respective ordering within each category does not represent a prioritization or implied value judgement.

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  1. Study on the shielding efficiency of water, HDPE, and boron-loaded HDPE for neutron background of plastic scintillator neutrino detector

    physics.ins-det 2026-06 unverdicted novelty 4.0 of 10

    For ALARM, 30 cm of 40% boron-loaded HDPE suppresses both fast and thermal neutrons with 90–95%+ efficiency, with EJ426 measurements supporting the simulation.

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