Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9855165 | Nuclear Physics B | 2005 | 24 Pages |
Abstract
We present a quenched lattice study of the form factors f+(q2) and f0(q2) of the matrix elements ãÏ|s¯γμu|Kã. We focus on the second-order SU(3)-breaking quantity [1âf+(0)], which is necessary to extract |Vus| from Kâ3 decays. For this quantity we show that it is possible to reach the percent precision which is the required one for a significant determination of |Vus|. The leading quenched chiral logarithms are corrected for by using analytic calculations in quenched chiral perturbation theory. Our final result, f+K0Ïâ(0)=0.960±0.005stat±0.007syst, where the systematic error does not include the residual quenched effects, is in good agreement with the estimate made by Leutwyler and Roos. A comparison with other non-lattice computations and the impact of our result on the extraction of |Vus| are also presented.
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
D. BeÄireviÄ, G. Isidori, V. Lubicz, G. Martinelli, F. Mescia, S. Simula, C. Tarantino, G. Villadoro,