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Design of a mobile neutron spectrometer for the Laboratori Nazionali del Gran Sasso (LNGS)

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arxiv 2307.06660 v3 pith:Z6HT7HEY submitted 2023-07-13 physics.ins-det astro-ph.IMnucl-ex

classification physics.ins-detastro-ph.IMnucl-ex
keywords detectorfluxlngsneutronsundergroundambientbackgrounddesign
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Environmental neutrons are a source of background for rare event searches (e.g., dark matter direct detection and neutrinoless double beta decay experiments) taking place in deep underground laboratories. The overwhelming majority of these neutrons are produced in the cavern walls by means of intrinsic radioactivity of the rock and concrete. Their flux and spectrum depend on time and location. Precise knowledge of this background is necessary to devise sufficient shielding and veto mechanisms, improving the sensitivity of the neutron-susceptible underground experiments. In this report, we present the design and the expected performance of a mobile neutron detector for the LNGS underground laboratory. The detector is based on capture-gated spectroscopy technique and comprises essentially a stack of plastic scintillator bars wrapped by gadolinium foils. The extensive simulation studies demonstrate that the detector will be capable of measuring ambient neutrons at low flux levels ($\sim$$10^{-6}\,\mathrm{n/cm^2/s}$) at LNGS, where the ambient gamma flux is by about 5 orders of magnitude larger.

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