English

B to V, A, T Tensor Form Factors in the Covariant Light-Front Approach: Implications on Radiative B Decays

High Energy Physics - Phenomenology 2015-03-13 v2 High Energy Physics - Experiment

Abstract

We reanalyze the BMB\to M tensor form factors in a covariant light-front quark model, where MM represents a vector meson VV, an axial-vector meson AA, or a tensor meson TT. The treatment of masses and mixing angles in the K1A,1BK_{1A,1B} systems is improved, where K1AK_{1A} and K1BK_{1B} are the 3P1^3P_1 and 1P1^1P_1 states of the axial-vector meson K1K_1, respectively. Rates of BMγB\to M\gamma decays are then calculated using the QCD factorization approach. The updated BKγB\to K^*\gamma, BK1(1270)γB\to K_1(1270)\gamma, K1(1400)γK_1(1400)\gamma and K2γK_2\gamma rates agree with the data. The K1(1270)K_1(1270)--K1(1400)K_1(1400) mixing angle is found to be about 5151^\circ. The sign of the mixing angle is fixed by the observed relative strength of BK1(1270)γB\to K_1(1270)\gamma and K1(1400)γK_1(1400)\gamma. The formalism is then applied to BsMB_s\to M tensor form factors. We find that the calculated BsϕγB_s\to \phi\gamma rate is consistent with experiment, though in the lower end of the data. The branching fractions of Bsf1(1420)γB_s\to f_1(1420)\gamma and f2(1525)γf'_2(1525)\gamma are predicted to be of order 10510^{-5} and it will be interesting to search for these modes. Rates on Bsf1(1285)γB_s\to f_1(1285)\gamma, h1(1380)γh_1(1380)\gamma, h1(1170)γh_1(1170)\gamma, f2(1270)γf_2(1270)\gamma decays are also predicted.

Keywords

Cite

@article{arxiv.0909.4627,
  title  = {B to V, A, T Tensor Form Factors in the Covariant Light-Front Approach: Implications on Radiative B Decays},
  author = {Hai-Yang Cheng and Chun-Khiang Chua},
  journal= {arXiv preprint arXiv:0909.4627},
  year   = {2015}
}

Comments

26 pages, 3 figures, version to appear in PRD