By recasting ATLAS's Z to three dark photon analysis, the authors set the best limits to date on the exotic Higgs decay chain H to aa to VVVV to eight fermions, bounding the branching fraction to roughly 4e-5 to 1e-4.
The Platinum Channel: Higgs Decays to as many as 8 Leptons
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abstract
We propose a search for Higgs decays with as many as eight leptons in the final state. This signal can arise in a simple model with a hidden vector ($A_d$) that gets mass via a hidden scalar ($h_d$) vacuum expectation value. The 125 GeV Higgs can then decay $H\rightarrow h_d h_d \rightarrow 4A_d\rightarrow 8f$, where $f$ are Standard Model fermions. We recast current searches and show that a branching ratio of $H\rightarrow h_dh_d$ as large as 10% is allowed. We also describe a dedicated search that could place bounds on BR($H\rightarrow h_dh_d$) as low as $10^{-5}$ using only 36 fb$^{-1}$ of data, with significant improvements coming from greater integrated luminosity.
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Limits on an Exotic Higgs Decay From a Recast ATLAS Four-Lepton Analysis
By recasting ATLAS's Z to three dark photon analysis, the authors set the best limits to date on the exotic Higgs decay chain H to aa to VVVV to eight fermions, bounding the branching fraction to roughly 4e-5 to 1e-4.