Scrutinizing B0-meson flavor changing neutral current decay into scalar K0*(1430) meson with b s +-() transition
Abstract
In this paper, we investigate the rare decay B0 K0*(1430)+- with =(e,μ,τ) and B0 K0*(1430) induced by the flavor changing neutral current transition of b s+-(). Firstly, the B0 K0*(1430) transition form factors (TFFs) are calculated by using the QCD light-cone sum rule approach up to next-to-leading order accuracy. In which the K0*(1430)-meson twist-2 and twist-3 LCDAs have been calculated both from the SVZ sum rule in the background field theory framework and light-cone harmonic oscillator model. Then, we obtained the three TFFs at large recoil point, i.e., f+B0 K0(0)= 0.470-0.101+0.086, f-B0 K0(0)= -0.340-0.068+0.068, and f TB0 K0(0)= 0.537+0.112-0.115. Meanwhile, we extrapolated TFFs to the whole physical q2-region by using the simplified z(q2)-series expansion. Furthermore, we calculate the B0 K0*(1430)+-() decay widths, branching fractions, and longitudinal lepton polarization asymmetries of B0 K0*(1430)+-, which lead to B(B0 K0*(1430)e+e-) = (6.65+2.52-2.42)× 10-7, B(B0 K0*(1430)μ+μ-)=(6.62+2.51-2.41)× 10-7, B(B0 K0*(1430)τ+τ-)=(1.88+1.10-0.97)× 10-8, B(B0 K0*(1430))= 3.85+1.55-1.48× 10-6 and the integrated longitudinal lepton polarization asymmetries APL = (-0.99, -0.96, -0.03) for the cases =(e, μ, τ) respectively.
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