[Submitted on 6 Feb 2021] (cross-list from hep-ph)
Radiative corrections to nucleon weak charges and Beyond Standard Model impact
The nucleon axial charge is a central ingredient in nuclear and particle physics, and a key observable in precision tests of the electroweak Standard Model sector and beyond. We report on the first complete calculation of its electroweak quantum corrections up to , using a combination of current algebra techniques and QCD sum rules. We find a substantial enhancement due to the weak magnetism contribution in the elastic channel, and include higher-twist and target mass corrections at low to find . Using analogous methods, we determine a new value for the vector charge renormalization, , and show how the two most recent calculations can be brought into agreement. This allows us to determine a corrected experimental , which is a shift away from the commonly quoted value. We use this new result to set constraints on exotic right-handed currents by comparing to lattice QCD results, and resolve a double-counting issue in the extraction from mirror decays.
- Subjects:
- High Energy Physics — Phenomenology (hep-ph); Nuclear Experiment (nucl-ex); Nuclear Theory (nucl-th)
- arXiv:
- 2102.03458 [pdf]