Yerevan Physics Institute, Yerevan, Armenia.
Institut für Hochenergiephysik, Wien, Austria.
Phys Rev Lett. 2018 Nov 30;121(22):221802. doi: 10.1103/PhysRevLett.121.221802.
The first evidence of events consistent with the production of a single top quark in association with a photon is reported. The analysis is based on proton-proton collisions at sqrt[s]=13 TeV and recorded by the CMS experiment in 2016, corresponding to an integrated luminosity of 35.9 fb^{-1}. Events are selected by requiring the presence of a muon (μ), a photon (γ), an imbalance in transverse momentum from an undetected neutrino (ν), and at least two jets (j) of which exactly one is identified as associated with the hadronization of a b quark. A multivariate discriminant based on topological and kinematic event properties is employed to separate signal from background processes. An excess above the background-only hypothesis is observed, with a significance of 4.4 standard deviations. A fiducial cross section is measured for isolated photons with transverse momentum greater than 25 GeV in the central region of the detector. The measured product of the cross section and branching fraction is σ(pp→tγj)B(t→μνb)=115±17(stat)±30(syst) fb, which is consistent with the standard model prediction.
首次报道了与光子相关联的单个顶夸克产生事件的证据。该分析基于 2016 年 CMS 实验在 sqrt[s]=13 TeV 质子-质子碰撞中记录的数据,对应于 35.9 fb^{-1}的积分亮度。通过要求存在一个 muon(μ)、一个 photon(γ)、一个未被探测到的中微子(ν)的横向动量不平衡以及至少两个 jets(j),其中只有一个被识别为与 b 夸克的强子化相关,来选择事件。基于拓扑和运动学事件特性的多元判别用于将信号与背景过程区分开来。观察到背景假设之上的过剩,置信度为 4.4 个标准差。在探测器的中心区域,测量了横动量大于 25 GeV 的孤立光子的有效截面。测量的截面和分支比的乘积为 σ(pp→tγj)B(t→μνb)=115±17(stat)±30(syst) fb,与标准模型预测一致。