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Displaced Photon Signal from a Light Scalar in Minimal Left-Right Symmetric Model

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arxiv 1612.09587 v3 pith:CMOBASHA submitted 2016-12-30 hep-ph hep-ex

Displaced Photon Signal from a Light Scalar in Minimal Left-Right Symmetric Model

classification hep-ph hep-ex
keywords left-rightscalarlightdiphotondisplacedjetsminimalmodel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We point out that in the minimal left-right realization of TeV scale seesaw for neutrino masses, the neutral scalar from the right-handed $SU(2)_R$ breaking sector could be much lighter than the right-handed scale. We discuss for the first time the constraints on this particle from low-energy flavor observables, find that the light scalar is necessarily long-lived. We show that it can be searched for at the LHC via displaced signals of a collimated photon jet, and can also be tested in current and future high-intensity experiments. In contrast to the unique diphoton signal (and associated jets) in the left-right case, a generic beyond Standard Model light scalar decays mostly to leptons or jets. Thus, the diphoton channel proposed here provides a new avenue to test the left-right framework and reveal the underlying neutrino mass generation mechanism.

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  1. Multiboson Signatures of Doubly Charged Scalars at a Same-Sign Muon Collider

    hep-ph 2026-07 conditional novelty 5.0

    A same-sign muon collider at 2 TeV with 1 ab^-1 could reach 2-sigma sensitivity to Type-II seesaw doubly charged scalars decaying to WW up to roughly 425-430 GeV, slightly extending current LHC coverage.