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Study of scalar meson f_0(980) and K_0^*(1430) from B \to f_0(980)\rho(\omega, \phi) and B \to K^*_0(1430)\rho(\omega) Decays

Abstract

In the two-quark model supposition for f0(980)f_0(980) and K0(1430)K_0^{*}(1430), the branching ratios and the direct CP-violating asymmetries for decays Bˉ0f0(980)ρ0(ω,ϕ),K00(1430)ρ0(ω),K0(1430)ρ+\bar{B}^0\to f_0(980)\rho^0(\omega,\phi), K^{*0}_0(1430)\rho^0(\omega), K^{*-}_0(1430)\rho^+ and Bf0(980)ρ,K00(1430)ρ,K0(1430)ρ0(ω)B^-\to f_0(980)\rho^-, K^{*0}_0(1430)\rho^-, K^{*-}_0(1430)\rho^0(\omega) are studied by employing the perturbative QCD (PQCD)factorization approach. we find the following results: (a) if the scalar meson f0(980)f_0(980) is viewed as a mixture of ssˉs\bar s and (uuˉ+ddˉ)/2(u\bar u+d\bar d)/\sqrt{2}, the branching ratios of the decays Bˉ0f0(980)ρ0(ω,ϕ)\bar{B}^0\to f_0(980)\rho^0(\omega,\phi) and Bf0(980)ρB^-\to f_0(980)\rho^-, which are induced by bdb\to d transition, are smaller than the currently experimental upper limits, and the predictions for the decay Bˉ0f0(980)ω,Bf0(980)ρ\bar{B}^0\to f_0(980)\omega, B^-\to f_0(980)\rho^- are not far away from their limits; (b) in the decays BK0(1430)ρ(ω)B\to K^*_0(1430)\rho(\omega), which are induced by bsb\to s transition, the branch ratio of Bˉ0K00(1430)ρ0\bar B^0\to K^{*0}_0(1430)\rho^0 is the smallest one in two scenarios, at the order of 10710^{-7} for scenario I, about 4.8×1064.8\times10^{-6} for scenario II; (c) the direct CP-asymmetries of the decays Bf0(980)ρ(ω)B\to f_0(980)\rho(\omega) have a strong dependent on the mixing angle θ\theta: they are large in the range of 25<θ<4025^\circ<\theta<40^\circ, and small in the range of 140<θ<165140^\circ<\theta<165^\circ, while the direct CP-asymmetries of the decays BK0(1430)ρ(ω)B\to K^{*}_0(1430)\rho(\omega) are not large in both scenarios and most of them are less than 20% in size.Comment: 17 pages, 5 figures, minor corrections, typos removed, accepted for publication in Phys. Rev.

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