arXiv · 1611.09594
Type-II Seesaw Model and Multilepton Signatures at Hadron Colliders
Abstract
We investigate multilepton signatures, arising from the decays of doubly charged and singly charged Higgs bosons in the Type-II Seesaw model. Depending on the vacuum expectation value of the triplet $v_{\Delta}$, the doubly and singly charged Higgs bosons can decay into a large variety of multi-lepton final states. We explore all possible decay modes corresponding to different regimes of $v_{\Delta}$, that generate distinguishing four and five leptonic signatures. We focus on the 13 TeV Large Hadron Collider (LHC) and further extend the study to a very high energy proton-proton collider (VLHC) with a center-of-mass energy of 100 TeV. We find that a doubly charged Higgs boson of masses around 375 GeV can be discovered at immediate LHC runs. A heavier mass of 630 GeV can instead be discovered at the high-luminosity run of the LHC or at the VLHC with 30 $\rm{fb}^{-1}$.
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Manimala Mitra, Saurabh Niyogi, Michael Spannowsky. 2016-11-29. Type-II Seesaw Model and Multilepton Signatures at Hadron Colliders. https://doi.org/10.1103/physrevd.95.035042
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