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Nagu, Srishti; Singh, Jaydip; Singh, Jyotsna; Petti, Roberto, E-mail: srishtinagu@gmail.com
Proceedings of the DAE-BRNS symposium on nuclear physics. V. 642019
Proceedings of the DAE-BRNS symposium on nuclear physics. V. 642019
AbstractAbstract
[en] The next generation neutrino oscillation experiments aim to measure the already measured neutrino oscillation parameters with utmost precision. At the present level of precision achieved, it is needed to constrain the systematic uncertainties in an attempt to make the predictions more accurate. Constraining neutrino interaction uncertainties is particularly difficult, since no complete model of neutrino interactions is available. Observing the neutrino interactions at different off-axis angles will provide an independent handle on neutrino energy. The DUNE-PRISM near detector concept can provide a data-driven determination of the relationship between true and reconstructed energy that is significantly less sensitive to neutrino interaction models. The next steps consist of a full oscillation analysis with far detector predictions produced directly from linear combinations of DUNE-PRISM off-axis measurements
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Gupta, Yogesh K.; Rout, P.C.; Pant, L.M.; Nayak, B.K. (Nuclear Physics Division, Bhabha Atomic Research Centre, Mumbai (India)) (eds.); Board of Research in Nuclear Sciences, Department of Atomic Energy, Mumbai (India); 1072 p; Dec 2019; [2 p.]; 64. DAE-BRNS symposium on nuclear physics; Lucknow (India); 23-27 Dec 2019
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Book
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Conference
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