arXiv · 1504.03973
Quark-hadron duality constraints on γZ box corrections to parity-violating elastic scattering
Abstract
We examine the interference γZ box corrections to parity-violating elastic electron--proton scattering in the light of the recent observation of quark-hadron duality in parity-violating deep-inelastic scattering from the deuteron, and the approximate isospin independence of duality in the electromagnetic nucleon structure functions down to Q^2 \approx 1 GeV^2. Assuming that a similar behavior also holds for the γZ proton structure functions, we find that duality constrains the γZ box correction to the proton's weak charge to be \Re e\, \square_{γZ}^V = (5.4 \pm 0.4) \times 10^{-3} at the kinematics of the Q_{\text{weak}} experiment. Within the same model we also provide estimates of the γZ corrections for future parity-violating experiments, such as MOLLER at Jefferson Lab and MESA at Mainz.
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N. L. Hall, P. G. Blunden, W. Melnitchouk, A. W. Thomas, R. D. Young. 2015-11-25. Quark-hadron duality constraints on γZ box corrections to parity-violating elastic scattering. https://doi.org/10.1016/j.physletb.2015.11.081
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