4.7 Article

Simplified models of flavourful leptoquarks

Journal

EUROPEAN PHYSICAL JOURNAL C
Volume 79, Issue 6, Pages -

Publisher

SPRINGER
DOI: 10.1140/epjc/s10052-019-7047-2

Keywords

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Funding

  1. Fundacao para a Ciencia e a Tecnologia (FCT) [IF/00816/2015, UID/FIS/00777/2013, CERN/FISPAR/0004/2017, PTDC/FIS-PAR/29436/2017]
  2. POCTI (FEDER)
  3. COMPETE
  4. QREN
  5. EU
  6. DESY

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We study the implications of single leptoquark extensions of the Standard Model (SM) under the assumption that their enhanced Yukawa sectors are invariant under global Abelian flavour symmetries already present in SM mass terms. Such symmetries, assumed to be the residual' subgroups of an ultra-violet flavour theory, have previously been considered in order to predict fermionic mixing angles. Here we focus instead on their effect on the novel flavour structures sourced by the leptoquark representations that address the present RK() anomalies in semileptonic rare B-decays. Combined with existing flavour data, the residual symmetries prove to be extremely constraining; we find that the (quark-lepton) leptoquark Yukawa couplings fall within O(10) highly predictive patterns, each with only a single free parameter, when normal' (SM-like) hierarchies are assumed. In addition, proton decay for the scalar SU(2) triplet representation is naturally avoided in the residual symmetry approach without relying on further model building. Our results indicate that a simultaneous explanation for the RK() anomalies and the flavour puzzle may be achieved in a simplified, model-independent formalism.

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