4.7 Article

Common explanation to the RK(*), RD(*), and ε′/ε anomalies in a 3HDM with right-handed neutrinos and connections to neutrino physics

期刊

PHYSICAL REVIEW D
卷 100, 期 5, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.100.055031

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资金

  1. Estonian Research Council [PRG356, IUT23-6, MOBTT5]
  2. ERDF Centre of Excellence Project [TK133]

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Scalar theories can account for the current R-D(*) measurements through a vector operator (c) over bar (L)gamma(mu)b(L)(tau) over bar (L)gamma(mu)nu(L) induced at the loop level. Once the vector contribution is considered on top of a subdominant tree-level scalar component, the predicted value of R-D(*) falls within the 1 sigma region indicated by the experiments. We explicitly demonstrate this claim in the framework of a three Higgs doublet model extended with GeV-scale right-handed neutrinos by matching the anomalous signal for perturbative values of the involved couplings and respecting the bounds from complementary flavor physics measurements. Remarkably, we furthermore show that the proposed framework can be employed to also simultaneously explain the present R-K(*) measurement, as well as the deviation in epsilon'/epsilon currently being debated in the literature. These results are obtained by considering the contribution of relatively light right-handed neutrinos which are fundamental in mediating the processes behind the anomalous signals. In this way, our findings reveal a new possible connection that links the flavor anomalies to the phenomenology of extended Higgs sector and neutrino physics.

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