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BSM physics at the LHeC and the FCC-he

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arxiv 1807.01618 v2 pith:2RDRYFNW submitted 2018-07-04 hep-ph

classification hep-ph
keywords physicsfcc-helhecprogramadditionaforementionedaimedalthough
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Electron-proton ($e^-p$) colliders are an ideal laboratory to study common features of electron and quarks with production via electroweak bosons, leptoquarks, multi-jet final states and very forward physics, due to their impressive pseudorapidity coverage. In addition to these physics cases, there exist a broad Beyond the Standard Model (BSM) program aimed at exploring the capabilities of the LHeC [1] and FCC-he [2] for several New Physics scenarios. Although their centre-of-mass energy is down with respect to a $pp$ collider by a factor of $\sqrt{E_p/E_e} \sim 10~(30)$ for the LHeC (FCC-he), they can be an invaluable tool to characterize BSM physics hints at $ee$ and $pp$ machines. The aim of this talk is to provide, on behalf of the BSM $e^-p$ Working Group, an overview of the aforementioned BSM program, by briefly summarizing the existing studies and reporting on the most recent progress. We expect that the ample scope in terms of NP models to be tested would enhance the synergies between the BSM and $e^-p$ communities

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  1. Lepton-Trijet and Displaced Vertex Searches for Heavy Neutrinos at Future Electron-Proton Colliders

    hep-ph 2019-08 conditional novelty 6.0 of 10

    Heavy neutrino searches at future ep colliders could reach mixing angles down to |θeθμ| ~ 10^-7 via lepton-trijet events and |θe|^2 ~ 10^-8 via displaced vertices.

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