English

Helicity amplitudes in $B \to D^{*} \bar{\nu} l$ decay

High Energy Physics - Phenomenology 2018-12-05 v2

Abstract

We use a recent formalism of the weak hadronic reactions that maps the transition matrix elements at the quark level into hadronic matrix elements, evaluated with an elaborate angular momentum algebra that allows finally to write the weak matrix elements in terms of easy analytical formulas. In particular they appear explicitly for the different spin third components of the vector mesons involved. We extend the formalism to a general case, with the operator γμαγμγ5\gamma^\mu -\alpha\gamma^\mu \gamma_5, that can accommodate different models beyond the standard model and study in detail the BDνˉlB \to D^{*} \bar{\nu} l reaction for the different helicities of the DD^*. The results are shown for each amplitude in terms of the α\alpha parameter that is different for each model. We show that dΓdMinv(νl)\frac{d \Gamma}{d M_{\rm inv}^{(\nu l)}} is very different for the different components M=±1,0M=\pm 1, 0 and in particular the magnitude dΓdMinv(νl)M=1dΓdMinv(νl)M=+1\frac{d \Gamma}{d M_{\rm inv}^{(\nu l)}}|_{M=-1} -\frac{d \Gamma}{d M_{\rm inv}^{(\nu l)}}|_{M=+1} is very sensitive to the α\alpha parameter, which suggest to use this magnitude to test different models beyond the standard model. We also compare our results with the standard model and find very similar results, and practically identical at the end point of Minv(νl)=mBmDM_{\rm inv}^{(\nu l)}= m_B- m_{D^*}.

Cite

@article{arxiv.1808.02876,
  title  = {Helicity amplitudes in $B \to D^{*} \bar{\nu} l$ decay},
  author = {L. R. Dai and E. Oset},
  journal= {arXiv preprint arXiv:1808.02876},
  year   = {2018}
}

Comments

25 pages, 10 figures