English

$B^0-\bar B^0$ entanglement for an ideal experiment on the direct CP violation $\phi_3/\gamma$ phase

High Energy Physics - Phenomenology 2022-10-05 v1 High Energy Physics - Experiment

Abstract

B0B^0--Bˉ0\bar B^0 Entanglement offers a conceptual alternative to the single charged B-decay asymmetry for the measurement of the direct CP violating γ/ϕ3\gamma/\phi_3 phase. With f=J/ΨKL,J/ΨKSf=J/\Psi K_L,J/\Psi K_S and g=(ππ)0,(ρLρL)0g=(\pi\pi)^0,(\rho_L\rho_L)^0 the 16 time-ordered double decay rate Intensities to (f,g)(f, g) depend on the relative phase between the the ff- and gg-decay amplitudes given by γ\gamma at tree-level. Several constraining consistencies appear. An intrinsic accuracy of the method at the level of ±1\pm 1^\circ could be achievable at Belle-II with an improved determination of the penguin amplitude to gg-channels from existing facilities.

Keywords

Cite

@article{arxiv.2204.05567,
  title  = {$B^0-\bar B^0$ entanglement for an ideal experiment on the direct CP violation $\phi_3/\gamma$ phase},
  author = {Jose Bernabeu and Francisco J. Botella and Miguel Nebot and Alejandro Segarra},
  journal= {arXiv preprint arXiv:2204.05567},
  year   = {2022}
}

Comments

6 pages, 1 figure