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arXiv · 1810.09450

Type-II Seesaw Scalar Triplet Model at a 100 TeV $pp$ Collider: Discovery and Higgs Portal Coupling Determination

Abstract

We investigate the collider phenomenology of the scalar triplet particles in the Type-II seesaw model at a 100 TeV $pp$ collider. Depending on triplet vacuum expectation value $v_\Delta$, the dominant discovery channels could be $H^{++} H^{--}$ and $H^{\pm\pm}H^\mp$. We find the $H^{\pm\pm}H^\mp\to W^\pm W^\pm h W^\mp/\ell^\pm \ell^\pm h W^\mp$ channels are promising for both model discovery at relatively large $v_\Delta$ and determination of the Higgs portal couplings $\lambda_4$ and $\lambda_5$. We also find that these two channels are complementary to indirect determination of $\lambda_4$ from future precise measurements on $h\to\gamma\gamma$ decay rate. Together with pair production of the doubly-charged Higgs subsequently decaying into same-sign di-leptons, the $H^{\pm\pm}H^\mp$ channels have the potential to cover a significant portion of the parameter space of the Type-II seesaw complex scalar triplet model.

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Yong Du, Aaron Dunbrack, Michael J. Ramsey-Musolf, Jiang-Hao Yu. 2018-10-22. Type-II Seesaw Scalar Triplet Model at a 100 TeV $pp$ Collider: Discovery and Higgs Portal Coupling Determination. https://doi.org/10.1007/jhep01(2019)101

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