In the two-quark model supposition for f0(980) and K0∗(1430), the
branching ratios and the direct CP-violating asymmetries for decays
Bˉ0→f0(980)ρ0(ω,ϕ),K0∗0(1430)ρ0(ω),K0∗−(1430)ρ+ and B−→f0(980)ρ−,K0∗0(1430)ρ−,K0∗−(1430)ρ0(ω) are studied by employing the perturbative QCD
(PQCD)factorization approach. we find the following results: (a) if the scalar
meson f0(980) is viewed as a mixture of ssˉ and (uuˉ+ddˉ)/2, the branching ratios of the decays Bˉ0→f0(980)ρ0(ω,ϕ) and B−→f0(980)ρ−, which are induced by
b→d transition, are smaller than the currently experimental upper limits,
and the predictions for the decay Bˉ0→f0(980)ω,B−→f0(980)ρ− are not far away from their limits; (b) in the decays B→K0∗(1430)ρ(ω), which are induced by b→s transition, the branch
ratio of Bˉ0→K0∗0(1430)ρ0 is the smallest one in two
scenarios, at the order of 10−7 for scenario I, about 4.8×10−6
for scenario II; (c) the direct CP-asymmetries of the decays B→f0(980)ρ(ω) have a strong dependent on the mixing angle θ:
they are large in the range of 25∘<θ<40∘, and small in the
range of 140∘<θ<165∘, while the direct CP-asymmetries of the
decays B→K0∗(1430)ρ(ω) 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.