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Leptonic-decay-constant ratio f(K+)/f(π+) from lattice QCD with physical light quarks

Authors :
A, Bazavov
C, Bernard
C, DeTar
J, Foley
W, Freeman
Steven, Gottlieb
U M, Heller
J E, Hetrick
J, Kim
J, Laiho
L, Levkova
M, Lightman
J, Osborn
S, Qiu
R L, Sugar
D, Toussaint
R S, Van de Water
R, Zhou
Source :
Physical review letters. 110(17)
Publication Year :
2013

Abstract

A calculation of the ratio of leptonic decay constants f(K+)/f(π+) makes possible a precise determination of the ratio of Cabibbo-Kobayashi-Maskawa (CKM) matrix elements |V(us)|/|V(ud)| in the standard model, and places a stringent constraint on the scale of new physics that would lead to deviations from unitarity in the first row of the CKM matrix. We compute f(K+)/f(π+) numerically in unquenched lattice QCD using gauge-field ensembles recently generated that include four flavors of dynamical quarks: up, down, strange, and charm. We analyze data at four lattice spacings a ≈ 0.06, 0.09, 0.12, and 0.15 fm with simulated pion masses down to the physical value 135 MeV. We obtain f(K+)/f(π+) = 1.1947(26)(37), where the errors are statistical and total systematic, respectively. This is our first physics result from our N(f) = 2+1+1 ensembles, and the first calculation of f(K+)/f(π+) from lattice-QCD simulations at the physical point. Our result is the most precise lattice-QCD determination of f(K+)/f(π+), with an error comparable to the current world average. When combined with experimental measurements of the leptonic branching fractions, it leads to a precise determination of |V(us)|/|V(ud)| = 0.2309(9)(4) where the errors are theoretical and experimental, respectively.

Details

ISSN :
10797114
Volume :
110
Issue :
17
Database :
OpenAIRE
Journal :
Physical review letters
Accession number :
edsair.pmid..........8e2422cbb7308256aaee4373039e15cf