论文标题

I型2HDM的Fermiophopic区域附近的光线充电希格斯的发现前景

Discovery prospects of a light charged Higgs near the fermiophobic region of Type-I 2HDM

论文作者

Bhatia, Disha, Desai, Nishita, Dwivedi, Siddharth

论文摘要

在发现后,确定类似Smlike的希格斯是否是扩展的希格斯行业的一部分是最重要的问题。在I型Higgs Doublet模型中,自然允许具有小于顶部和底部夸克的质量和底部夸克和底部夸克之和的光带电荷的玻色子,并且可以与LHC上大部分参数空间的中性标量一起生成。如此低的质量电荷标量通常对费米子模式具有显着的衰变。 $τν$和$ c s $。但是,在存在光中性标量($φ$)的情况下,带电的希格斯玻色子在玻色衰变模式中具有大量的分支分数$ h^{\ pm} \ to w^{(*)}φ$。识别观察到的125个Gev Higgs的重型中性希格斯($ h $),并在极限$ m_ {h^\ pm} \大约m_a $中工作,我们检查了带电的Higgs生产和衰减,以$ p p \ to $ p p \ to H^\ pm pm h \ to H^\ pm h \ to w^^^{(*)H $。然后,两个轻型希格斯($ h $)的存在是确定带电的希格斯产量的关键。光希格斯分支比率在很大程度上由$ b \ bar {b} $模式支配,除非靠近费米恐惧症限制。在这里,$ b \ bar b $和$γγ$的费率可以是可比的,我们可以使用$γγb\ bar {b} $签名。该签名与以前在文献中讨论过的$ H H \至4γ$互补。使用$ W $ Boson的Lepton,我们通过剪切和计数分析表明,可以在13.6 TEV LHC的合理意义上探测新的轻中性希格斯和带电的Higgs,并具有300-3000 fb $^{ - 1} $的集成LumininSusity的TEV LHC。

Determining if the SM-like Higgs is part of an extended Higgs sector is the most important question to be asked after discovery. A light charged Higgs boson with mass smaller than the sum of top and bottom quarks is naturally allowed in Type-I two Higgs doublet model and can be produced in association with neutral scalars for large parts of parameter space at the LHC. Such low mass charged scalars typically have dominant decays to the fermionic modes viz. $τν$ and $c s$. However in the presence of light neutral scalar ($φ$), the charged Higgs boson has a substantial branching fraction into the bosonic decay modes $H^{\pm} \to W^{(*)} φ$. Identifying the heavier neutral Higgs ($H$) with the observed 125 GeV Higgs and working in the limit $M_{H^\pm} \approx M_A$, we examine charged Higgs production and decay in the bosonic mode $p p \to H^\pm h \to W^{(*)}h h$. The presence of two light Higgses ($h$) is then the key to identifying charged Higgs production. The light Higgs branching ratio is largely dominated by the $b\bar{b}$ mode except when close to the fermiophobic limit. Here, the rates into $b \bar b$ and $γγ$ can be comparable and we can use the $γγb\bar{b}$ signature. This signature is complementary to the $h h \to 4γ$ which has been previously discussed in literature. Using the lepton from the $W$ boson, we demonstrate with a cut-and-count analysis that both the new light neutral Higgs as well as charged Higgs can be probed with reasonable significance at 13.6 TeV LHC with 300-3000 fb$^{-1}$ of integrated luminosity.

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