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arXiv:1610.01464·v3·Nuclear Theory

Towards a Unified Model of Neutrino-Nucleus Reactions for Neutrino Oscillation Experiments

S.X. Nakamura (Osaka Univ.)🇯🇵 · H. Kamano (KEK, J-PARC)🇯🇵 · Y. Hayato (ICRR, Univ. of Tokyo)🇯🇵 · M. Hirai (Nippon Inst. Tech.)🇯🇵 · W. Horiuchi (Hokkaido Univ.)🇯🇵 · S. Kumano (KEK, J-PARC)🇯🇵 · T. Murata (Osaka Univ.)🇯🇵 · K. Saito (Tokyo Univ. of Sci.)🇯🇵 · M. Sakuda (Okayama Univ.)🇯🇵 · T. Sato (Osaka Univ., J-PARC)🇯🇵 · Y. Suzuki (Niigata Univ., RIKEN)🇯🇵

Abstract

A precise description of neutrino-nucleus reactions will play a key role in addressing fundamental questions such as the leptonic CP violation and the neutrino mass hierarchy through analyzing data from next-generation neutrino oscillation experiments. The neutrino energy relevant to the neutrino-nucleus reactions spans a broad range and, accordingly, the dominant reaction mechanism varies across the energy region from quasi-elastic scattering through nucleon resonance excitations to deep inelastic scattering. This corresponds to transitions of the effective degree of freedom for theoretical description from nucleons through meson-baryon to quarks. The main purpose of this review is to report our recent efforts towards a unified description of the neutrino-nucleus reactions over the wide energy range; recent overall progress in the field is also sketched. Starting with an overview of the current status of neutrino-nucleus scattering experiments, we formulate the cross section to be commonly used for the reactions over all the energy regions. A description of the neutrino-nucleon reactions follows and, in particular, a dynamical coupled-channels model for meson productions in and beyond the (1232) region is discussed in detail. We then discuss the neutrino-nucleus reactions, putting emphasis on our theoretical approaches. We start the discussion with electroweak processes in few-nucleon systems studied with the correlated Gaussian method. Then we describe quasi-elastic scattering with nuclear spectral functions, and meson productions with a -hole model. Nuclear modifications of the parton distribution functions determined through a global analysis are also discussed. Finally, we discuss issues to be addressed for future developments.

Comments: 68 pages, 33 figures; (v2) reference added, author name in metadata corrected; (v3) Discussion extended in Sec. I and IV, Fig. 10 added to compare with a previous result on two-pion productions, Table I extended to include a comparison with a recent T2K result on coherent pion production

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