English

Model-independent analysis of $b\to d$ processes

High Energy Physics - Phenomenology 2023-06-07 v2 High Energy Physics - Experiment

Abstract

We perform a model-independent analysis of Δb=Δd=1|\Delta b|=|\Delta d|=1 processes to test the standard model and probe flavor patterns of new physics. Constraints on Wilson coefficients are obtained from global fits to B+π+μ+μB^+ \to \pi^+ \,\mu^+\mu^-, Bs0Kˉ0μ+μB^0_s\to \bar{K}^{*0}\, \mu^+\mu^-, B0μ+μB^0\to\mu^+\mu^-, and radiative BXdγB \to X_d \,\gamma decays data. The fits are consistent with the standard model but leave sizable room for new physics. Besides higher-statistics measurements and more data in theory-friendly bins of the dilepton mass, further complementary observables such as angular distributions of Bs0Kˉ0+B_s^0 \to \bar{K}^{*0}\,\ell^+ \ell^-, Bρ+B \to \rho\,\ell^+ \ell^- or the baryonic modes ΞbΣ+\Xi_b \to \Sigma\,\ell^+ \ell^-, ΩbΞ+\Omega_b^- \to \Xi^- \, \ell^+ \ell^- are necessary to resolve the significant degeneracy in the fit for the semileptonic four-fermion operators. Assuming minimal quark flavor violation, the bsb \to s global fit implies tight constraints on the bdb \to d couplings, and hence allows to test this paradigm with improved data. Another benefit from Δb=Δd=1|\Delta b|=|\Delta d|=1 processes is to shed light on the BB-anomalies in Δb=Δs=1|\Delta b|=|\Delta s|=1 modes from a new angle. Specifically, studies of lepton flavor-specific and dineutrino modes are informative on the lepton flavor structure. Rare bd,ννˉb \to d \, \ell \ell, \nu \bar \nu decays can be studied at high luminosity flavor facilities LHCb, Belle II, and a future ZZ-factory.

Keywords

Cite

@article{arxiv.2209.04457,
  title  = {Model-independent analysis of $b\to d$ processes},
  author = {Rigo Bause and Hector Gisbert and Marcel Golz and Gudrun Hiller},
  journal= {arXiv preprint arXiv:2209.04457},
  year   = {2023}
}

Comments

16 pages, 5 figures, 8 tables. Adaptations of parametric and experimental fit input, corresponding tables and figures, minor clarifications added, conclusions unchanged