Contributions of ordertoform factors and unitarity of the CKM matrix
- 11 July 2000
- journal article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 62 (3)
- https://doi.org/10.1103/physrevd.62.033003
Abstract
The form factors for the $K_{\ell 3}$ semileptonic decay are computed to order $O(p^4)$ in generalized chiral perturbation theory. The main difference with the standard $O(p^4)$ expressions consists in contributions quadratic in quark masses, which are described by a single divergence-free low-energy constant, $A_3$. A new simultaneous analysis is presented for the CKM matrix element $V_{us}$, the ratio $F_K/F_{\pi}$, $K_{\ell 3}$ decay rates and the scalar form factor slope $\lambda_0$. This framework easily accommodates the precise value for $V_{ud}$ deduced from superallowed nuclear $\beta$-decays
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