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- W3128377861 abstract "In this work we obtain the analytical expressions for the boundaries of the charged current quasi-elastic double differential cross section in terms of dimensionless energy and momentum transfers, for the Relativistic Fermi Gas (RFG) and the Super-Scaling approach with relativistic effective mass (SuSAM*) models, within the scaling formalism. In addition, this new double differential cross section in the scaling formalism has very good properties to be implemented in the Monte Carlo (MC) neutrino event generator, particularly because its peak is almost flat with the (anti)neutrino energy. This makes it especially well-suited for the event generation by the acceptance-rejection method usually used in the neutrino generators. Finally, we analyze the total charged current quasi-elastic (CCQE) cross section $sigma(E_{nu})$ for both models and attribute the enhancement observed in the SuSAM* total cross section to the high-momentum components which are present, in a phenomenological way, in its scaling function, while these are absent in the RFG model." @default.
- W3128377861 created "2021-02-15" @default.
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- W3128377861 date "2021-02-10" @default.
- W3128377861 modified "2023-09-27" @default.
- W3128377861 title "Analysis of the boundaries of the quasi-elastic neutrino-nucleus cross section in the SuSAM* model." @default.
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