Measurement of Atmospheric Neutrino Oscillations with a High-Density Detector

Abstract

We propose an experiment to test the hypothesis that the reported anomaly on atmospheric neutrino fluxes is due to numu <-> nux oscillations. It will rely both on a disappearance technique, exploiting the method of the dependence of the event rate on L/E, which was recently shown to be effective for detection of neutrino oscillation and measurement of the oscillation parameters, and on an appearance technique, looking for an excess of muon-less events at high energy produced by upward-going tau neutrinos. The detector will consist of iron planes interleaved by limited streamer tubes. The total mass will be about 30 kt. The possibility of recuperating most of the instrumentation from existing detectors allows to avoid R&D phases and to reduce construction time. In four years of data taking, this experiment will be sensitive to oscillations numu <-> nux with Delta m2 > 10-4 eV2 and a mixing near to maximal, and answer the question whether nux is a sterile or a tau neutrino.

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