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Determination of the proton spectral function of isotope[12][]{C} from (e,e^prime p) data

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arxiv 2407.18226 v1 pith:2DFDSHIE submitted 2024-07-25 nucl-th hep-ph

Determination of the proton spectral function of isotope[12][]{C} from (e,e^prime p) data

classification nucl-th hep-ph
keywords functionspectraldatadeterminationnuclearprimetheoreticalaccurate
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The determination of the nuclear spectral function from the measured cross section of the electron-nucleus scattering process $e + A \to e^\prime + p + (A-1)$is discussed, and illustrated for the case of a carbon target. The theoretical model based on the local density approximation, previously employed to derive the spectral function from a combination of accurate theoretical calculations and experimental data, has been developed further by including additional information obtained from measurements performed with high missing energy resolution. The implications for the analysis of $\gamma$-ray emission associated with nuclear deexcitation are considered.

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  1. Signal selection and model-independent extraction of pionless charged-current muon neutrino cross section using double-differential kinematic imbalance observables on carbon and oxygen with the T2K experiment

    hep-ex 2026-07 accept novelty 6.5

    First joint C/O double-differential νμ CC0πNp cross sections in δpT–δαT and pN–cosθμ show current generators fail to describe the data.