English

Charm rescattering contribution in rare $B^+_c \to K^+ K^- \pi^+$ decay

High Energy Physics - Phenomenology 2018-10-17 v2 High Energy Physics - Experiment

Abstract

Following the experimental results from LHCb on the rare decay Bc+KK+π+B^+_c \to K^-K^+\pi^+, we investigate the possibility where this process is dominated by a double charm rescattering. The BcB_c decay to double charm channels have a weak topology that is favoured in comparison with the direct production of KK+π+K^-K^+\pi^+ in the final state, suppressed by quark annihilation. The decay amplitude for Bc+KK+π+B^+_c \to K^-K^+\pi^+ with BcB_c decaying first to double charm channels is described by a charm penguin diagram, represented by charm hadronic triangle loops, which reach the final state of interest after DDˉKKˉD\bar{D}\to K\bar{K} or D+Dsπ+K D^+ D^-_s \to \pi^+ K^- transitions. We show that these processes give rise to non-resonant amplitudes with a clear signature in the Dalitz plot. In a near future, the new data from LHCb run II will be able to confirme if the main hypotheses of this work is correct and the dominant mechanism to produce K+K+πK^+K^+\pi^- from the decay of Bc+B^+_c is through charm rescattering.

Keywords

Cite

@article{arxiv.1808.02945,
  title  = {Charm rescattering contribution in rare $B^+_c \to K^+ K^- \pi^+$ decay},
  author = {Ignacio Bediaga and Tobias Frederico and Patricia C Magalhaes},
  journal= {arXiv preprint arXiv:1808.02945},
  year   = {2018}
}