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Constraints on new physics from $K \to \pi \nu \bar\nu$

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arxiv 1804.07449 v3 pith:N5YRBN54 submitted 2018-04-20 hep-ph hep-ex

classification hep-phhep-ex
keywords neutrinophysicscouplingsinteractionscasescontributiondeltahanded
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We study generic effects of new physics on the rare decay modes $K_L \to \pi^0 \nu \bar\nu$ and $K^+ \to \pi^+ \nu \bar\nu$. We discuss several cases: left-handed neutrino couplings; right handed neutrino couplings; neutrino lepton flavour violating (LFV) interactions; and $\Delta I =3/2$ interactions. The first of these cases has been studied before as it covers many new physics extensions of the standard model; the second one requires the existence of a new light (sterile) right-handed neutrino and its contribution to both branching ratios is always additive to the SM. The case of neutrino LFV couplings introduces a CP conserving contribution to $K_L \to \pi^0 \nu \bar\nu$ which affects the rates in a similar manner as a right handed neutrino as neither one of these interferes with the standard model amplitudes. Finally, we consider new physics with $\Delta I =3/2$ interactions to go beyond the Grossman-Nir bound. We find that the rare kaon rates are only sensitive to new physics scales up to a few GeV for this scenario.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Weak charged current induced electron and positron scattering off proton at JLab and MAMI energies

    hep-ph 2026-07 conditional novelty 4.0 of 10

    Calculated cross sections and spin observables for weak charged-current e±+p scattering at JLab-MAMI energies, presented as benchmarks to extract the axial dipole mass and test G- and T-invariance.

  2. Experimental Study of Rare Kaon Decays at J-PARC with KOTO and KOTO II

    hep-ex 2025-05 conditional novelty 2.0 of 10

    The paper argues that KOTO II can measure the branching ratio of KL to pi0 nu nu with sensitivity below 1e-12 by the 2030s, enabling a 5-sigma discovery at the Standard Model value.

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