Vacuum stability and naturalness in type-II seesaw
arXiv:1601.05217 · doi:10.1140/epjc/s10052-016-4180-z
Abstract
We study the vacuum stability and perturbativity conditions in the minimal type-II seesaw model. These conditions give characteristic constraints to model parameters. In the model, there is a triplet scalar field, which could cause a large Higgs mass correction. From the naturalness point of view, heavy Higgs masses should be lower than , which can be testable by the LHC Run-II results. Due to effects of the triplet scalar field, branching ratios of the Higgs decay () deviate from the standard model, and large parameter region is excluded by the recent ATLAS and CMS combined analysis of . Our result of the signal strength for is , but its deviation is too small to observe at the LHC experiment.
19 pages, 6 figures. Version accepted for publication in EPJC. All figures have been revised with using one-loop threshold corrections, but our results do not change
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