First Measurement of the Ds+→ K0μ+μ Decay

Abstract

We report the first measurement of the semileptonic decay D+s → K0μ+μ, using a sample of e+e- annihilation data corresponding to an integrated luminosity of 7.33~fb-1 collected at center-of-mass energies between 4.128 to 4.226~GeV with the BESIII detector at the BEPCII collider. The branching fraction of the decay is measured to be B(D+s→ K0μ+μ) = (2.89 0.27 stat 0.12 syst)× 10-3, where the first uncertainty is statistical and the second is systematic. Based on a simultaneous fit to the partial decay rates in q2 intervals measured in D+s → K0μ+μ and D+s → K0e+e decays, the product value of the form factor fK0+(0) and the Cabibbo-Kobayashi-Maskawa matrix element |Vcd| is measured to be fK0+(0)|Vcd|=0.1400.008 stat0.002 syst. Using |Vcd|=0.224860.00068 as an input, the hadronic form factor is determined to be fK0+(0)=0.6230.036 stat 0.009 syst at q2=0. This is the most precise determination of fK0+(0) in the D+s → K0 transition to date. The measured branching fraction and form factor presented in this work provide the most stringent test on various non-perturbative theoretical calculations. Taking fK0+(0)=0.63070.0020 from lattice calculations as an input, we obtain |Vcd|=0.2200.013 stat0.003 syst0.001 LQCD, which is the most precise determination of |Vcd| using the Ds+→ K0+ decays. In addition, lepton flavor universality is tested for the first time with D+s → K0+ decays in full and separate q2 intervals. No obvious violation is found.

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