New determination of using the three-loop QCD corrections for the semi-leptonic decays
arXiv:2206.02503 · doi:10.1016/j.nuclphysa.2022.122595
Abstract
We present a new determination of the Cabibbo-Kobayashi-Maskawa matrix element by using the three-loop perturbative QCD corrections for the semi-leptonic decay. The decay width of semi-leptonic decay can be factorized as perturbatively calculable short-distance part and the non-perturbative but universal long-distance part. We adopt the principle of maximum conformality (PMC) single-scale setting approach to deal with the perturbative series so as to achieve a precise fixed-order prediction for the short-distance parameter . By applying the PMC, an overall effective value is achieved by recursively using the renormalization group equation, which inversely results in a precise scale-invariant pQCD series. Such scale-invariant series also provides a reliable basis for predicting the contributions from uncalculated perturbative terms. We then obtain , where the error is the squared average of those from and the uncertainties caused by the uncalculated higher-order perturbative terms. By using the data of , we finally obtain , which is consistent with the PDG value within errors.
7 pages,2 figures