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Weak decays of unstable $b$-mesons

High Energy Physics - Phenomenology 2016-04-13 v1 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

We investigate the decays of the excited (bqˉ)(b\bar q) mesons as probes of the short-distance structure of the weak ΔB=1\Delta B=1 transitions. These states are unstable under the electromagnetic or strong interactions although their widths are typically suppressed by phase space. As compared to the pseudoscalar BB meson, the purely leptonic decays of the vector BB^* are not chirally suppressed and are sensitive to different combinations of the underlying weak effective operators. An interesting example is Bs+B^*_s\to \ell^+\ell^-, which has a rate that can be accurately predicted in the standard model. The branching fraction is B1011\mathcal{B}\sim10^{-11}, irrespective of the lepton flavor and where the main uncertainty stems from the unmeasured and theoretically not-well known BsB_s^* width. We discuss the prospects for producing this decay mode at the LHC and explore the possibility of measuring the BsB_s^*\to\ell\ell amplitude, instead, through scattering experiments at the BsB_s^* resonance peak. Finally we also discuss the charged-current Bu,cνB_{u,c}^*\to\ell\nu decay which can provide complementary information on the buνb\to u\ell\nu and bcνb\to c\ell\nu transitions.

Keywords

Cite

@article{arxiv.1509.05049,
  title  = {Weak decays of unstable $b$-mesons},
  author = {Benjamín Grinstein and Jorge Martin Camalich},
  journal= {arXiv preprint arXiv:1509.05049},
  year   = {2016}
}

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21 pages