English

Reduced hadronic uncertainty in the determination of $V_{ud}$

High Energy Physics - Phenomenology 2018-12-19 v2 Nuclear Experiment Nuclear Theory

Abstract

We analyze the universal radiative correction ΔRV\Delta_R^V to neutron and superallowed nuclear β\beta decay by expressing the hadronic γW\gamma W-box contribution in terms of a dispersion relation, which we identify as an integral over the first Nachtmann moment of the γW\gamma W interference structure function F3(0)F_3^{(0)}. By connecting the needed input to existing data on neutrino and antineutrino scattering, we obtain an updated value of ΔRV=0.02467(22)\Delta_R^V = 0.02467(22), wherein the hadronic uncertainty is reduced. Assuming other Standard Model theoretical calculations and experimental measurements remain unchanged, we obtain an updated value of Vud=0.97366(15)|V_{ud}| = 0.97366(15), raising tension with the first row CKM unitarity constraint. We comment on ways current and future experiments can provide input to our dispersive analysis.

Keywords

Cite

@article{arxiv.1807.10197,
  title  = {Reduced hadronic uncertainty in the determination of $V_{ud}$},
  author = {Chien-Yeah Seng and Mikhail Gorchtein and Hiren H. Patel and Michael J. Ramsey-Musolf},
  journal= {arXiv preprint arXiv:1807.10197},
  year   = {2018}
}

Comments

5 pages, 5 figures, references updated; version submitted to PRL