论文标题

LHC上的LHC上的vectorlike Lepton

Leptonic cascade decays of a heavy Higgs boson through vectorlike leptons at the LHC

论文作者

Dermisek, Radovan, Kawamura, Junichiro, Lunghi, Enrico, McGinnis, Navin, Shin, Seodong

论文摘要

我们证明了通过类似矢量的瘦叶子作为延伸的希格斯扇区的同时探针和LHC处的额外物质颗粒的同时探针,这表明了沉重的中性希格斯玻色子的完全缓慢的级联腐烂的潜力。我们探索的过程是独一无二的,因为它们的事件拓扑导致了像二玻色般的麻液最终状态,并没有重建量规玻色子的质量。通过重新铸造现有的$ 2 \ ell + e_t^{\ rm miss} $和$ 3/4 \ ell $使用LHC中的run2数据搜索通道,我们获得了$ \ textit {modelIndepp处} $ bounds in Bounds bongs of the Hl-lhc的重量标量和矢量类like like Like Like Like Like Like Like like like like like like like的前景。我们的结果可以直接应用于共享最终状态和事件拓扑的任何新物理场景。为了具体关系,我们将结果应用于基准方案:两种Higgs Doublet模型II型II增强了矢量般的Leptons。值得注意的是,即使有了当前数据,我们的分析的敏感性也显示出巨大的中性希格斯和载体样瘦素的质量分别为2 TEV和1.5 TEV。即使对于低$ \tanβ\ gtrsim 1,$分析仍保留对略高于1 TEV的沉重希格斯质量的敏感性。 HL-LHC的未来敏感性分别将重型希格斯和新瘦素的覆盖范围扩大到2.7 TEV和2 TEV。

We demonstrate the potential of fully leptonic cascade decays of a heavy neutral Higgs boson through vectorlike leptons as a simultaneous probe for extended Higgs sectors and extra matter particles at the LHC. The processes we explore are unique in that their event topologies lead to di-boson-like leptonic final states with a lepton pair which does not reconstruct the mass of a gauge boson. By recasting existing $2\ell + E_T^{\rm miss}$ and $3/4\ell$ searches channels using run2 data from the LHC we obtain $\textit{model independent}$ bounds on the masses of heavy scalars and vectorlike leptons and use these results to explore future prospects at the HL-LHC. Our results can be directly applied to any kind of new physics scenarios sharing the final states and the event topology. For concreteness, we apply our results to a benchmark scenario: a two Higgs doublet model type-II augmented with vectorlike leptons. Remarkably, even with current data the sensitivity of our analysis shows a reach for masses of a heavy neutral Higgs and vectorlike leptons up to 2 TeV and 1.5 TeV, respectively. Even for low $\tanβ\gtrsim 1,$ the analysis retains sensitivity to heavy Higgs masses slightly above 1 TeV. The future sensitivities at the HL-LHC extend the reach for heavy Higgses and new leptons to 2.7 TeV and 2 TeV, respectively.

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