Investigating the ratio of CKM matrix elements |Vub|/|Vcb| from semileptonic decay Bs0 K-μ+μ and kaon twist-2 distribution amplitude

Abstract

In this paper, we calculate the ratio of Cabibbo-Kobayashi-Maskawa matrix elements, |Vub|/|Vcb|, based on the semileptonic decay Bs0 K-μ+μ. Its key component, the Bs K transition form factor fBs K+(q2), is studied within the QCD light-cone sum rules approach by using a chiral correlator. The derived fBs K+(q2) is dominated by the leading-twist part, and to improve its precision, we construct a new model for the kaon leading-twist distribution amplitude φ2;K(x,μ), whose parameters are fixed by using the least squares method with the help of the moments calculated by using the QCD sum rules within the background field theory. The first four moments at the initial scale μ0 = 1~ GeV are, 1 2;K = -0.0438+0.0053-0.0075, 2 2;K = 0.262 0.010, 3 2;K = -0.0210+0.0024-0.0035 and 4 2;K = 0.132 0.006, respectively. And their corresponding Gegenbauer moments are, a2;K1 = -0.0731+0.0089-0.0124, a2;K2 = 0.182+0.029-0.030, a2;K3 = -0.0114+0.0008-0.0016 and a2;K4 = 0.041-0.003+0.005, respectively. At the large recoil region, we obtain fBs K + (0) = 0.270+0.022-0.030. By extrapolating fBs K+(q2) to all the physical allowable region, we obtain a |Vub|-independent decay width for the semileptonic decay Bs0 K-μ+μ, 5.626+1.271-0.864 × 10-12\ GeV, which then leads to |Vub|/|Vcb| = 0.0720.005.

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