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Observability of s-channel heavy charged Higgs at LHC using top tagging technique

机译:<重点型=“斜体”> S -ChiNEL的LHC中的可观察性使用TOP标记技术

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A bstract In this paper, the question of observability of a heavy charged Higgs in the mass range 400 GeV & m ~( H ) _(±) & 1000 GeV, is addressed. The production process is set to pp → H ± → t b ˉ $$ ppo {H}^{pm}o toverline{b} $$ at 14 TeV LHC. The analysis benefits from top tagging technique which is based on finding a fat jet as a result of the boosted top quark decay in signal events. A detailed hadron level analysis is performed and selection efficiencies are presented with different charged Higgs mass hypotheses. Finally running toy experiments and using pseudo-data, a fit over signal plus background distributions is performed to assess possibility of reconstructing the charged Higgs peak and its invariant mass measurement. It is shown that the charged Higgs mass can well be reconstructed in the mass range 500 GeV to 1 TeV, with a signal significance which depends on tan β . Eventually 5 σ discovery and 95% C.L. exclusion contours are also provided.
机译:本文中的Bstract,质量范围400 gev& m〜(h)_(±)& 1000 GEV,是解决的。在14 TEV LHC时,生产过程将设置为PP→H±→TBˉ$$ pp to {h} ^ { pm} to t overline {b} $$。由于信号事件中的增强顶部Quark衰减,来自顶部标记技术的分析来自顶部标记技术。进行详细的强子水平分析,并用不同的带电的HIGGS质量假设呈现选择效率。最后运行玩具实验和使用伪数据,执行拟合信号加背景分布,以评估重建带电HIGGS峰值及其不变质量测量的可能性。结果表明,带电的HIGGS质量可以在质量范围500 gev至1 tev中重建,其信号意义取决于tanβ。最终5σ发现和95%C.L.还提供排斥轮廓。

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