English

What can we learn from $B\to a_1(1260)(b_1(1235))\pi(K)$ decays?

High Energy Physics - Phenomenology 2008-11-26 v1

Abstract

We investigate the Ba1(1260)(b1(1235))π(K)B\to a_1(1260)(b_1(1235))\pi(K) decays under the factorization scheme and find many discrepancies between theoretical predictions and the experimental data. In the tree dominated processes, large contributions from color-suppressed tree diagrams are required in order to accommodate with the large decay rates of Ba10πB^-\to a_1^0\pi^- and Ba1π0B^-\to a_1^-\pi^0. For Bˉ0(a1+,b1+)K\bar B^0\to (a_1^+, b_1^+)K^- decays which are both induced by bsb\to s transition, theoretical predictions on their decay rates are larger than the data by a factor of 2.8 and 5.5, respectively. Large electro-weak penguins or some new mechanism are expected to explain the branching ratios of Bb10KB^-\to b_1^0K^- and Ba1Kˉ0B^-\to a_1^-\bar K^0. The soft-collinear-effective-theory has the potential to explain large decay rates of Ba10πB^-\to a_1^0\pi^- and Ba1π0B^-\to a_1^-\pi^0 via a large hard-scattering form factor ζJBa1\zeta_J^{B\to a_1}. We will also show that, with proper charming penguins, predictions on the branching ratios of Bˉ0(a1+,b1+)K\bar B^0\to (a_1^+, b_1^+)K^- can also be consistent with the data.

Keywords

Cite

@article{arxiv.0806.2510,
  title  = {What can we learn from $B\to a_1(1260)(b_1(1235))\pi(K)$ decays?},
  author = {Wei Wang and Run-Hui Li and Cai-Dian Lü},
  journal= {arXiv preprint arXiv:0806.2510},
  year   = {2008}
}

Comments

16 pages, no figure