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Charged current weak production of $Δ(1232)$ induced by electrons and positrons

Published 9 Jul 2024 in hep-ph, hep-ex, and nucl-th | (2407.06803v1)

Abstract: The charged current weak production of $\Delta (1232)$ from the free proton target induced by the electron/positron in the intermediate energy range corresponding to the beam energy available at JLab and Mainz, has been studied. The results for the differential scattering cross section $\frac{d\sigma}{dQ2}$, the angular distribution $\frac{d\sigma}{d\Omega_{\Delta}}$, and the total scattering cross section $\sigma(E_e)$ for both the electron and positron induced processes are presented, for the various energies in the range of 0.5--4~GeV. The cross section $\sigma(E_e)$ is found to be of the order of $10{-39}$~cm${2}$ for the electron/positron energies in the few GeV range. The availability of electron/positron beams having well defined energy and direction with very high luminosity of the order of $10{38}-10{39}$~cm${-2}$~sec${-1}$, makes it possible to observe the weak charged current production of $\Delta(1232)$ and determine the axial vector form factors $C_{i}{A} (Q2);~(i=3-5)$. The sensitivity of the differential cross section $\frac{d\sigma}{dQ2}$ to the subdominant form factors $C_{3}{A}(Q2)$ and $C_{4}{A} (Q2)$ is found to be strong enough, especially in the low $Q2$ region, which can be used to determine them phenomenologically and to test the various theoretical models proposed to calculate them.

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