Measurement of $\bar{\nu}_{\mu}$ charged-current single $\pi^{-}$ production on hydrocarbon in the few-GeV region using MINERvA

Phys. Rev. D 100, 052008 (2019) The antineutrino scattering channel $\bar{\nu}_{\mu} \,\text{CH} \rightarrow \mu^{+} \,\pi^{-} \,X$(nucleon(s)) is analyzed in the incident energy range 1.5 to 10 GeV using the MINERvA detector at Fermilab. Differential cross sections are reported as functions of $\mu...

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Hauptverfasser: Le, T, Akbar, F, Aliaga, L, Andrade, D. A, Ascencio, M. V, Bashyal, A, Bercellie, A, Betancourt, M, Bodek, A, Bonilla, J. L, Bravar, A, Budd, H, Caceres, G, Cai, T, Carneiro, M. F, Coplowe, D, Dytman, S. A, Díaz, G. A, Felix, 5 J, Fields, L, Filkins, A, Fine, R, Fiza, N, Gago, A. M, Gallagher, H, Ghosh, A, Gran, R, Harris, D. A, Henry, S, Jena, S, Kleykamp, J, Kordosky, M, Last, D, Lu, X. -G, Maher, E, Manly, S, Mann, W. A, Mauger, C, McFarland, K. S, McGowan, A. M, Messerly, B, Miller, J, Morfín, J. G, Naples, D, Nelson, J. K, Nguyen, C, Norrick, A, Nuruzzaman, Olivier, A, Paolone, V, Perdue, G. N, Ramírez, M. A, Ransome, R. D, Ray, H, Rimal, D, Ruterbories, D, Schellman, H, Sobczyk, J. T, Salinas, C. J. Solano, Su, H, Sultana, M, Syrotenko, V. S, Valencia, E, Wospakrik, M, Yaeggy, B, Zazueta, L
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Zusammenfassung:Phys. Rev. D 100, 052008 (2019) The antineutrino scattering channel $\bar{\nu}_{\mu} \,\text{CH} \rightarrow \mu^{+} \,\pi^{-} \,X$(nucleon(s)) is analyzed in the incident energy range 1.5 to 10 GeV using the MINERvA detector at Fermilab. Differential cross sections are reported as functions of $\mu^{+}$ momentum and production angle, $\pi^{-}$ kinetic energy and production angle, and antineutrino energy and squared four-momentum transfer. Distribution shapes are generally reproduced by simulations based on the GENIE, NuWro, and GiBUU event generators, however GENIE (GiBUU) overestimates (underestimates) the cross-section normalizations by 8% (10%). Comparisons of data with the GENIE-based reference simulation probe conventional treatments of cross sections and pion intranuclear rescattering. The distribution of non-track vertex energy is used to decompose the signal sample into reaction categories, and cross sections are determined for the exclusive reactions $\mu^{+} \pi^{-} n$ and $ \mu^+ \pi^{-} p$. A similar treatment applied to the published MINERvA sample $\bar{\nu}_{\mu} \,\text{CH} \rightarrow \mu^{+} \,\pi^{0} \,X$(nucleon(s)) has determined the $\mu^{+} \pi^{0} n$ cross section, and the latter is used with $\sigma(\pi^{-} n)$ and $\sigma(\pi^{-} p)$ to carry out an isospin decomposition of $\bar{\nu}_{\mu}$-induced CC($\pi$). The ratio of magnitudes and relative phase for isospin amplitudes $A_{3}$ and $A_{1}$ thereby obtained are: $R^{\bar{\nu}} = 0.99 \pm 0.19$ and $\phi^{\bar{\nu}} = 93^{\circ} \pm 7^{\circ}$. Our results are in agreement with bubble chamber measurements made four decades ago.
DOI:10.48550/arxiv.1906.08300