English

B-decay discrepancies after Moriond 2019

High Energy Physics - Phenomenology 2020-04-22 v2 High Energy Physics - Experiment

Abstract

Following the updated measurement of the lepton flavour universality (LFU) ratio R_K in B -> Kll decays by LHCb, as well as a number of further measurements, e.g. R_K* by Belle and B_s -> mu mu by ATLAS, we analyse the global status of new physics in b -> s transitions in the weak effective theory at the b-quark scale, in the Standard Model effective theory at the electroweak scale, and in simplified models of new physics. We find that the data continues to strongly prefer a solution with new physics in semi-leptonic Wilson coefficients. A purely muonic contribution to the combination C_9 = -C_10, well suited to UV-complete interpretations, is now favoured with respect to a muonic contribution to C_9 only. An even better fit is obtained by allowing an additional LFU shift in C_9. Such a shift can be renormalization-group induced from four-fermion operators above the electroweak scale, in particular from semi-tauonic operators, able to account for the potential discrepancies in b -> c transitions. This scenario is naturally realized in the simplified U_1 leptoquark model. We also analyse simplified models where a LFU effect in b -> sll is induced radiatively from four-quark operators and show that such a setup is on the brink of exclusion by LHC di-jet resonance searches.

Keywords

Cite

@article{arxiv.1903.10434,
  title  = {B-decay discrepancies after Moriond 2019},
  author = {Jason Aebischer and Wolfgang Altmannshofer and Diego Guadagnoli and Meril Reboud and Peter Stangl and David M. Straub},
  journal= {arXiv preprint arXiv:1903.10434},
  year   = {2020}
}

Comments

41 pages, 20 figures, 3 tables. Originally presented at Moriond EW 2019 on March 22, 2019. v2: Numerics updated including the Belle RD(*) update, clarifications and references added

R2 v1 2026-06-23T08:18:27.242Z