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NSR database version of May 9, 2024.

Search: Author = J.Spitz

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2021NI05      Phys.Rev. C 103, 064603 (2021)

A.Nikolakopoulos, V.Pandey, J.Spitz, N.Jachowicz

Modeling quasielastic interactions of monoenergetic kaon decay-at-rest neutrinos

NUCLEAR REACTIONS 12C, 40Ar(e, e'), E=160-400 MeV; calculated double differential σ(E, θ) for the charged-current (CC) interaction and compared with experimental data. 12C, 40Ar(ν, ν), (ν, ν'), E=180, 236, 500 MeV; calculated σ per neutron as function of the energy transfer and muon-scattering angles, longitudinal and transverse contributions to the cross section per neutron, flux-averaged cross sections from reconstructed energies for the MiniBooNE for νe from νμ to νe oscillations, expected number of electron neutrons in charged-current quasielastic (CCQE) scattering events on argon target, double differential cross section for CC scattering. Solution of Hartree-Fock equations using Skyrme type nucleon-nucleon interaction, with long-range nuclear correlations treated by means of a continuum random-phase approximation (CRPA) framework and Green's function method. Comparison with experimental data. Relevance to future KDAR (Kaon-decay-at-rest, K+ decay to μ+ and νμ) neutrino cross-section measurements, and application to current and future experiments utilizing neutrinos, such as MicroBooNE and ICARUS at FNAL, JSNS2 at J-PARC MLF, and plan to study known-energy KDAR neutrino scattering off nuclei.

doi: 10.1103/PhysRevC.103.064603
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