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Searching for new heavy neutral gauge bosons using vector boson fusion processes at the LHC

机译:在大型强子对撞机中使用矢量玻色子融合过程寻找新的重中性玻色子

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New massive resonances are predicted in many extensions to the Standard Model (SM) of particle physics and constitutes one of the most promising searches for new physics at the LHC. We present a feasibility study to search for new heavy neutral gauge bosons using vector boson fusion (VBF) processes, which become especially important as the LHC probes higher collision energies. In particular, we consider the possibility that the discovery of a Z ′ boson may have eluded searches at the LHC. The coupling of the Z ′ boson to the SM quarks can be small, and thus the Z ′ would not be discoverable by the searches conducted thus far. In the context of a simplified phenomenological approach, we consider the Z ′ → τ τ and Z ′ → μ μ decay modes to show that the requirement of a dilepton pair combined with two high p T forward jets with large separation in pseudorapidity and with large dijet mass is effective in reducing SM backgrounds. The expected exclusion bounds (at 95% confidence level) are m ( Z ′ ) 1.8 ? TeV and m ( Z ′ ) 2.5 ? TeV in the τ τ j f j f and μ μ j f j f channels, respectively, assuming 1000 ? fb ? 1 of 13 TeV data from the LHC. The use of the VBF topology to search for massive neutral gauge bosons provides a discovery reach with expected significances greater than 5 σ (3 σ ) for Z ′ masses up to 1.4 (1.6) TeV and 2.0 (2.2) TeV in the τ τ j f j f and μ μ j f j f channels.
机译:在粒子物理标准模型(SM)的许多扩展中,预计会出现新的大规模共振,这是大型强子对撞机对新物理最有希望的探索之一。我们提出了一项可行性研究,以使用矢量玻色子融合(VBF)工艺寻找新的重型中性玻色子,当LHC探测更高的碰撞能量时,这变得尤为重要。尤其是,我们认为Z'玻色子的发现可能无法在大型强子对撞机中进行搜索。 Z'玻色子与SM夸克的耦合可能很小,因此到目前为止无法通过搜索发现Z'。在简化的现象学方法的背景下,我们考虑Z'→ττ和Z'→μμ衰减模式,以表明对双列对的要求与两个高p T正向射流相结合,在伪快速中具有大的分离dijet质量可有效减少SM背景。预期的排除边界(在95%置信水平下)是m(Z')<1.8? TeV和m(Z')<2.5?假设在ττj f j f和μμj f j f通道中分别存在TeV。 fb? LHC的13 TeV数据中的1。对于在ττjfjf中Z'质量高达1.4(1.6)TeV和2.0(2.2)TeV的Z'质量,使用VBF拓扑搜索大型中性规玻色子可提供发现意义,其预期意义大于5σ(3σ)和μμjfjf通道。

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