English

On Flavourful Easter eggs for New Physics hunger and Lepton Flavour Universality violation

High Energy Physics - Phenomenology 2017-10-04 v3 High Energy Astrophysical Phenomena High Energy Physics - Experiment

Abstract

Within the standard approach of effective field theory of weak interactions for ΔB=1\Delta B = 1 transitions, we look for possibly unexpected subtle New Physics effects, here dubbed "flavourful Easter eggs". We perform a Bayesian global fit using the publicly available HEPfit package, taking into account state-of-the-art experimental information concerning these processes, including the suggestive measurements from LHCb of RKR_{K} and RKR_{K^{*}}, the latter available only very recently. We parametrize New Physics contributions to bsb \to s transitions in terms of shifts of Wilson coefficients of the electromagnetic dipole and semi-leptonic operators, assuming CP-conserving effects, but allowing in general for violation of lepton flavour universality. We show how optimistic/conservative hadronic estimates can impact quantitatively the size of New Physics extracted from the fit. With a conservative approach to hadronic uncertainties we find nonzero New Physics contributions to Wilson coefficients at the level of 3σ\sim 3\sigma, depending on the model chosen. Furthermore, given the interplay between hadronic contributions and New Physics effects in the leptonic vector current, a scenario with nonstandard leptonic axial currents is comparable to the more widely advocated one with New Physics in the leptonic vector current.

Keywords

Cite

@article{arxiv.1704.05447,
  title  = {On Flavourful Easter eggs for New Physics hunger and Lepton Flavour Universality violation},
  author = {Marco Ciuchini and Antonio M. Coutinho and Marco Fedele and Enrico Franco and Ayan Paul and Luca Silvestrini and Mauro Valli},
  journal= {arXiv preprint arXiv:1704.05447},
  year   = {2017}
}

Comments

27 pages, 6 figures and 5 tables. v2: numerical results and plots replaced with higher statistics MC runs, references added. v3: final version to appear in EPJC