Nuclear beta decays and CKM unitarity
arXiv:1807.01146
Abstract
Nuclear beta decays between (J^pi,T) = (0^+,1) analog states yield the best value for the Vud element of the Cabibbo-Kobayashi-Maskawa matrix. Current world data establish the corrected Ft values of 14 separate superallowed transitions to a precision of order 0.1% or better. The validity of the small theoretical correction terms is confirmed by excellent consistency among the 14 Ft values and by recent measurements that compare pairs of mirror superallowed transitions. With consistency established, the results now yield |Vud| = 0.97420(21). This value is consistent with the considerably less precise results obtained from beta decays of the neutron, the pion and T=1/2 mirror nuclei, which are hampered by experimental challenges.
Talk presented at CIPANP2018. 8 pages, 3 figures. arXiv admin note: substantial text overlap with arXiv:1509.04743
Cited by in corpus (4)
- Cabibbo anomaly versus electroweak precision tests: An exploration of extensions of the Standard Model
- Are the CKM anomalies induced by vector-like quarks? Limits from flavor changing and Standard Model precision tests
- High-Precision Branching Ratio Measurement and Spin Assignment Implications for Ga Superallowed Decay
- Vector-like Leptons in Light of the Cabibbo-Angle Anomaly