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arXiv:2207.03862·v1·High Energy Physics — Phenomenology

Probing non-standard couplings in single Higgs production at future electron-proton collider

Pramod Sharma🇮🇳 · Ambresh Shivaji🇮🇳

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Abstract

The couplings of the Higgs boson () with massive gauge bosons of weak interaction (), can be probed in single Higgs boson production at the proposed future Large Hadron-Electron Collider (LHeC). In the collision of an electron with a proton, single Higgs production takes place via so-called charged-current () and neutral-current () processes. We explore the potential of the azimuthal angle correlation between the forward jet and scattered neutrino or electron in probing the non-standard couplings at the collider center-of-mass energy of ~TeV. We choose the most general modifications (of -even and -odd nature) to these couplings due to new physics effects beyond the standard model. We derive exclusion limits on new physics parameters of couplings as a function of integrated luminosity at C.L. using the azimuthal angular correlations in charged- and neutral-current processes. We find that using 1000 data, the standard model-like new physics parameters in and couplings can be constrained with accuracies of and , respectively. The least constrained -even parameters of coupling can be as large as 0.04, while those of coupling can have values around 0.31. Allowed values of -odd parameters in and couplings are found to be around 0.14 and 0.34, respectively. We also study changes in the allowed values of non-trivial new physics parameters in the presence of other parameters.

Comments: 21 pages, 9 figures, 4 tables

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