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Light sterile neutrinos and lepton-number-violating kaon decays in effective field theory

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abstract

We investigate lepton-number-violating decays $K^\mp \rightarrow \pi^\pm l^\mp l^\mp$ in the presence of sterile neutrinos. We consider minimal interactions with Standard-Model fields through Yukawa couplings as well as higher-dimensional operators in the framework of the neutrino-extended Standard Model Effective Field Theory. We use $SU(3)$ chiral perturbation theory to match to mesonic interactions and compute the lepton-number-violating decay rate in terms of the neutrino masses and the Wilson coefficients of higher-dimensional operators. For neutrinos that can be produced on-shell, the decay rates are highly enhanced and higher-dimensional interactions can be probed up to very high scales around $ \mathcal{O}$(30) TeV.

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2026 1

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Neutrinoless Double-Beta Decays from Operator Mixing

hep-ph · 2026-08-07 · conditional · novelty 6.0

Renormalization-group mixing lets heavy-quark dimension-seven operators feed neutrinoless double-beta decay, giving some of the strongest current bounds on these new-physics operators.

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  • Neutrinoless Double-Beta Decays from Operator Mixing hep-ph · 2026-08-07 · conditional · none · ref 61 · internal anchor

    Renormalization-group mixing lets heavy-quark dimension-seven operators feed neutrinoless double-beta decay, giving some of the strongest current bounds on these new-physics operators.