New physics in $b\to s\ell\ell$ transitions at one loop
Abstract
We investigate new-physics contributions to transitions in the context of an effective field theory extension of the Standard Model, including operator mixing at one loop. We identify the few scenarios where a single Wilson coefficient, , induces a substantial shift in the lepton flavour universality ratios and at one loop, while evading -pole precision tests, collider bounds, and other flavour constraints. Good fits to the present data are achieved by a left-handed current operator with quark-flavour indices or , hitherto overlooked. Interestingly, the running of the Standard Model Yukawa matrices gives the dominant effect for these scenarios. We match the favoured effective-theory scenarios to minimal, single-mediator models, which are subject to additional stringent constraints. Notably, we recognise three viable instances of a leptoquark with one coupling to fermions only. If the anomalies were confirmed, it appears that one-loop explanations have good prospects of being directly tested at the LHC.
Keywords
Cite
@article{arxiv.1909.08567,
title = {New physics in $b\to s\ell\ell$ transitions at one loop},
author = {Rupert Coy and Michele Frigerio and Federico Mescia and Olcyr Sumensari},
journal= {arXiv preprint arXiv:1909.08567},
year = {2020}
}
Comments
v2: 15 pages, 6 figures; Section III.2 extended, Table II and Fig. 6 correspondingly updated, references added