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Lowering the scale of Pati-Salam breaking through seesaw mixing

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arxiv 2012.05976 v2 pith:VGWT46CY submitted 2020-12-10 hep-ph

classification hep-ph
keywords pati-salamlimitsbreakingmultipletsfindfourhelicitysuppression
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We analyse the experimental limits on the breaking scale of Pati-Salam extensions of the Standard Model. These arise from the experimental limits on rare-meson decay processes mediated at tree-level by the vector leptoquark in the model. This leptoquark ordinarily couples to to both left- and right-handed SM fermions and therefore the meson decays do not experience a helicity suppression. We find that the current limits vary from $\mathcal{O}(80-2500)$ TeV depending on the choice of matrix structure appearing in the relevant three-generational charged-current interactions. We extensively analyse scenarios where additional fermionic degrees of freedom are introduced, transforming as complete Pati-Salam multiplets. These can lower the scales of Pati-Salam breaking through mass-mixing within the charged-lepton and down-quark sectors, leading to a helicity suppression of the meson decay widths which constrain Pati-Salam breaking. We find four multiplets with varying degrees of viability for this purpose: an $SU(2)_{L/R}$ bidoublet, a pair of $SU(4)$ decuplets and either a $SU(2)_L$ or $SU(2)_R$ triplet all of which contain heavy exotic versions of the SM charged leptons. We find that the Pati-Salam limits can be as low as $\mathcal{O}(5-150)$ TeV with the addition of these four multiplets. We also identify an interesting possible connection between the smallness of the neutrino masses and a helicity suppression of the Pati-Salam limits for three of the four multiplets.

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Cited by 3 Pith papers

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  2. Universal Seesaw Pati-Salam Model with P for Strong CP

    hep-ph 2025-12 conditional novelty 6.0 of 10

    A parity-symmetric Pati-Salam model with universal seesaw masses gives an axionless strong-CP solution and radiatively induced neutrino masses.

  3. Fermion Masses and Mixing in Pati-Salam Unification with $S_3$ Modular Symmetry

    hep-ph 2024-12 conditional novelty 6.0 of 10

    Three S3-modular Pati-Salam benchmark models fit 16 fermion mass and mixing observables and predict testable neutrino masses, Majorana phases, and neutrinoless double-beta decay rates.

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