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- W823087091 abstract "The LAGUNA/LBNO consortium proposes a next generation neutrino observatory to address fundamental questions in particle and astroparticle physics [89]. The first option of the Design Study consists of a far detector, in its first stage a 20 kt LAr double phase TPC and a magnetised iron calorimeter, situated at 2300 km from CERN inside the Pyhasalmi mine and a near detector based on a high-pressure argon gas TPC. The very long baseline allows a precise neutrino spectrum shape determination over the lst and 2nd oscillation maxima and will therefore allow the exploration of the L/E behavior, distinguishing the e-ects arising from !cP and the neutrino propagation in matter clarifying the ordering of the masses of neutrinos and measuring the CP phase. In parallel, it will allow to investigate a broad astrophysics program including Supernovae neutrino detection and proton decay. The second option of the LAGUNA/LBNO Design Study is a Megaton scale Water Cherenkov detector (MEMPHYS) installed under the Frejus mountain (130 km from CERN) with the aim to determine the CP violation in the leptonic sector and to study astrophysical sources of neutrinos as well as atmospheric neutrinos and proton decay. In both cases a dedicated neutrino beam from CERN is assumed. This PhD work is a detailed study for the evaluation of the physics potential of both options putting in evidence the advantages and the differences of the two technologies. This thesis will detail the reasons of the choice of a Giant double phase Liquid Argon detector at a very long baseline taking into account also the latest improvements in the knowledge of the neutrino oscillation parameters from current experiments and considering future beam layouts and complementary baselines. It will be proven that LBNO can guarantee the Mass Hierarchy determination within the first years of run and a 5 sigma coverage of most of the phase space in about 10 years of run." @default.
- W823087091 created "2016-06-24" @default.
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- W823087091 date "2014-01-01" @default.
- W823087091 modified "2023-09-27" @default.
- W823087091 title "Feasibility study of a new generation neutrino detectors in the context of the LBNO experiment" @default.
- W823087091 hasPublicationYear "2014" @default.
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