$\bar B_s\to K$ semileptonic decay from an Omnès improved nonrelativistic quark model
Abstract: We study the $f+$ form factor for the $\bar B_s\to K+\ell-\bar\nu_\ell$ semileptonic decay in a nonrelativistic quark model. The valence quark contribution is supplemented with a $\bar B*$-pole term that dominates the high $q2$ region. To extend the quark model predictions from its region of applicability near $q2_{\rm max}=(M_{B_s}-M_K)2$, we use a multiply-subtracted Omn`es dispersion relation. We fit the subtraction constants to a combined input from previous light cone sum rule results in the low $q2$ region and the quark model results (valence plus $\bar B*$-pole) in the high $q2$ region. From this analysis, we obtain $\Gamma(\bar B_s\to K+\ell-\bar\nu_\ell)=(5.47{+0.54}{-0.46})|V{ub}|2\times 10{-9}\,{\rm MeV}$, which is about 10% and 20% higher than predictions based on Lattice QCD and QCD light cone sum rules respectively.
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