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arxiv: 1606.02896 · v3 · submitted 2016-06-09 · ⚛️ physics.ins-det

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DANSS: Detector of the reactor AntiNeutrino based on Solid Scintillator

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classification ⚛️ physics.ins-det
keywords reactordanssdetectorneutrinocoreexpectedhighlevel
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The DANSS project is aimed at creating a relatively compact neutrino spectrometer which does not contain any flammable or other dangerous liquids and may therefore be located very close to the core of an industrial power reactor. As a result, it is expected that high neutrino flux would provide about 15,000 IBD interactions per day in the detector with a sensitive volume of 1 m$^3$. High segmentation of the plastic scintillator will allow to suppress a background down to a 1% level. Numerous tests performed with a simplified pilot prototype DANSSino under a 3 GW$_{th}$ reactor of the Kalinin NPP have demonstrated operability of the chosen design. The DANSS detector surrounded with a composite shield is movable by means of a special lifting gear, varying the distance to the reactor core in a range from 10 m to 12 m. Due to this feature, it could be used not only for the reactor monitoring, but also for fundamental research including short-range neutrino oscillations to the sterile state. Supposing one-year measurement, the sensitivity to the oscillation parameters is expected to reach a level of $sin^2(2\theta)$ ~ 0.005 with $\Delta m^2 \subset (0.02-5.0)$ eV$^2$.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Precision Light Yield and Crosstalk Characterization for the SuperFGD scintillator cubes

    physics.ins-det 2026-01 unverdicted novelty 4.0

    Light yield maps and position-dependent crosstalk of 2-6% in SuperFGD scintillator cubes match a simple Monte Carlo model and confirm design performance for T2K ND280.