English

CP Violation in the Decay B \to X_d e^+ e^-

High Energy Physics - Phenomenology 2016-08-24 v2

Abstract

The decay bde+eb\to d e^+e^- has an amplitude containing comparable contributions proportional to VtbVtdV_{tb}V_{td}^{*}, VcbVcdV_{cb}V_{cd}^{*} and VubVudV_{ub}V_{ud}^{*}. These pieces involve different unitarity phases produced by ccˉc\bar{c} and uuˉu\bar{u} loops. The simultaneous presence of different CKM phases and different dynamical phases leads to a calculable asymmetry in the partial widths of bde+eb\to d e^+e^- and bˉdˉe+e\bar{b}\to \bar{d} e^+e^-. Using the effective Hamiltonian of the standard model, we calculate this asymmetry as a function of the e+ee^+e^- invariant mass. The effects of ρ\rho, ω\omega and J/ψJ/\psi resonances are taken into account in the vacuum polarization of the uuˉu\bar{u} and ccˉc\bar{c} currents. As a typical result, an asymmetry of 5- 5% (- 2%) is predicted in the nonresonant domain 1GeV<me+e<mJ/ψ1 GeV < m_{e^+e^-} < m_{J/\psi}, assuming η=0.34\eta = 0.34 and ρ=0.3(0.3)\rho= 0.3 (-0.3). The branching ratio in this domain is 1.2×107(3.3×107)1.2\times 10^{-7} (3.3\times 10^{-7}). Results are also obtained in the region of the J/ψJ/\psi resonance, where an asymmetry of 3×1033\times 10^{-3} is expected, subject to certain theoretical uncertainties in the bdJ/ψb\to d J/\psi amplitude.

Keywords

Cite

@article{arxiv.hep-ph/9608361,
  title  = {CP Violation in the Decay B \to X_d e^+ e^-},
  author = {F. Krüger and L. M. Sehgal},
  journal= {arXiv preprint arXiv:hep-ph/9608361},
  year   = {2016}
}

Comments

20 pages, LaTeX, 3 eps figures, uses cite.sty, epsf.sty, and amssym.sty. Version to appear in Phys. Rev. D, with some minor additions

R2 v1 2026-07-22T14:32:53.582Z