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- W2023004122 abstract "Making use of a formalism previously developed by Hwang, Henley, and Miller, we obtain numerical predictions for the electron scattering double differential cross section and the parity-violating asymmetry (caused by Z-boson exchange), both defined in the laboratory frame, for the kinematics suitable for the upcoming Continuous Electron Beam Accelerator Facility. For the kinematic regime characterized by ${q}^{2}$ensuremath{le}15 ${mathrm{fm}}^{mathrm{ensuremath{-}}2}$ and ${E}_{mathrm{rel}mathrm{ensuremath{le}}10}$ MeV with ${q}^{2}$ and ${E}_{mathrm{rel}}$, respectively, the four-momentum transfer squared and the n-p excitation energy, the asymmetry is of order ${10}^{mathrm{ensuremath{-}}5}$--${10}^{mathrm{ensuremath{-}}4}$ while the cross section remains large, so that a precision test of the standard Glashow-Weinberg-Salam electroweak theory may be attempted. For the kinematic regime characterized by ${q}^{2}$ensuremath{ge}30 ${mathrm{fm}}^{mathrm{ensuremath{-}}2}$ and ${E}_{mathrm{rel}mathrm{ensuremath{le}}10}$ MeV, the asymmetry may be of order ${10}^{mathrm{ensuremath{-}}3}$ so that one may attempt an experiment at backward scattering angles to extract interesting information regarding the large ${q}^{2}$ behavior of the nucleon electromagnetic and weak form factors." @default.
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- W2023004122 title "Parity violation in deuteron electrodisintegration near threshold with a (0.5–4.0) GeV electron beam" @default.
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- W2023004122 doi "https://doi.org/10.1103/physrevc.33.1381" @default.
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