论文标题

大型强子对撞机上具有深度学习的矢量样卵子的现象学

Phenomenology of vector-like leptons with Deep Learning at the Large Hadron Collider

论文作者

Freitas, Felipe F., Gonçalves, João, Morais, António P., Pasechnik, Roman

论文摘要

在本文中,提出了一个受到三代矢量般的费米子,新的希格斯双线和富裕的中微子领域的启发的模型。使用最先进的深度学习技术,我们对该模型进行了第一个现象学分析,该模型的重点是研究新的带电载体样瘦素(VLL)及其在CERN大型强子对撞机(LHC)的可能签名。在我们的数值分析中,我们考虑了矢量 - 玻色融合和VLL对生产拓扑的信号事件,均涉及最终状态,其中包含一对带有不同风味的带电的瘦素和两个无菌中微子,可提供缺失的能量。我们还考虑了VLL单一生产的情况,除了一对无菌中微子外,最终状态仅包含一个带电的Lepton。根据通过进化的算法获得的结果,所有计算的可观察物均作为用于深度学习分析的数据集,其中构建了神经网络,其目标是最大程度地提高精度度量或ASIMOV对不同质量VLL的意义。考虑到这三个分析拓扑的效果,我们发现,在高光度LHC上观察新VLL的综合意义在$5.7σ$不等,质量为$ 1.25〜 \ Mathrm {tev} $,总数是$28σ$,如果Vll Mass Mass Mass Mass Mass Mass Math Mathrm Mathrm Mathrm Mathrm Mathrm c} $28σ$。我们还表明,在LHC Run-III结束时,可以将$ 200〜 \ Mathrm {Gev} $ VLL排除在外,以$ 8.8 $的标准偏差的信心。获得的结果表明,我们的模型可以在LHC操作结束之前进行探测,尤其是提供重要的现象学信息,以限制从所考虑的大统一图片中出现的新规格对称性的能量量表。

In this paper, a model inspired by Grand Unification principles featuring three generations of vector-like fermions, new Higgs doublets and a rich neutrino sector at the low scale is presented. Using the state-of-the-art Deep Learning techniques we perform the first phenomenological analysis of this model focusing on the study of new charged vector-like leptons (VLLs) and their possible signatures at CERN's Large Hadron Collider (LHC). In our numerical analysis we consider signal events for vector-boson fusion and VLL pair production topologies, both involving a final state containing a pair of charged leptons of different flavor and two sterile neutrinos that provide a missing energy. We also consider the case of VLL single production where, in addition to a pair of sterile neutrinos, the final state contains only one charged lepton. All calculated observables are provided as data sets for Deep Learning analysis, where a neural network is constructed, based on results obtained via an evolutive algorithm, whose objective is to maximise either the accuracy metric or the Asimov significance for different masses of the VLL. Taking into account the effect of the three analysed topologies, we have found that the combined significance for the observation of new VLLs at the high-luminosity LHC can range from $5.7σ$, for a mass of $1.25~\mathrm{TeV}$, all the way up to $28σ$ if the VLL mass is $200~\mathrm{GeV}$. We have also shown that by the end of the LHC Run-III a $200~\mathrm{GeV}$ VLL can be excluded with a confidence of $8.8$ standard deviations. The results obtained show that our model can be probed well before the end of the LHC operations and, in particular, providing important phenomenological information to constrain the energy scale at which new gauge symmetries emergent from the considered Grand Unification picture can be manifest.

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