论文标题

在LHC探索Higgs-Photon生产

Exploring Higgs-Photon Production at the LHC

论文作者

Biswas, Tisa, Datta, Anindya

论文摘要

在标准模型有效场理论的框架内,我们已经通过HIGGS加光子最终状态(迄今未观察到的标准模型)来研究了物理学的信号。使用相关的尺寸-6运算符,我们基于希格斯耦合的洛伦兹结构来探测两种不同的相互作用类别,以衡量玻色子和费米子。首先,对这些操作员的威尔逊系数的约束是从现有的实验数据中得出的。然后,我们专注于Higgs玻色子的耐刺衰变,在增强政权的两个底部夸克上,导致$ P_T $ fat-jet在硬光子上后退。在CMS运行的II搜索中,搜索共振到希格斯玻色子和光子,已经完成了此通道的详细信号和背景分析,并获得了相关的威尔逊系数的限制。通过执行基于剪切的分析,我们确定了一些区分信号和SM背景的运动学观测值。在LHC的14个TEV运行中以$ 3000〜 \ rm fb^{ - 1} $数据的最低值将在LHC的14 TEV运行中产生$3σ$信号的最低值。使用增强决策树并利用JET子结构技术的多变量分析进一步有助于隔离SMEFT驱动信号的贡献的相空间区域,从而显着增强。最后,我们简要讨论了在一个特别有趣的UV完整模型上,即最小的超对称标准模型的参数依赖性和对系数允许值的解释。

We have investigated the signal for physics beyond the Standard Model via Higgs plus photon final state, hitherto unobserved at the LHC, in the framework of Standard Model Effective Field Theory. Using the relevant dimension-6 operators, we probe two distinct classes of interactions, based on the Lorentz structure of Higgs couplings to gauge bosons and fermions. To begin with, constraints on the Wilson coefficients of these operators have been derived from existing experimental data. We then focus on the hadronic decay of the Higgs boson to two bottom quarks in the boosted regime, leading to a high $p_T$ fat-jet recoiling against a hard photon. Following a CMS Run II search for a resonance decaying into a Higgs boson and a photon, a detailed signal and background analysis for this channel has been done and limits on the relevant Wilson coefficients have been obtained. By performing a cut-based analysis, we identify some kinematic observables that distinguish between signal and SM background. Minimum values of the Wilson coefficients that will yield $3σ$ signal significance at the 14 TeV run of the LHC with $3000 ~\rm fb^{-1}$ data, have been obtained. A multivariate analysis using a boosted decision tree and exploiting the jet substructure techniques further help to isolate the regions of phase space where the contribution of SMEFT driven signal is significantly enhanced. Finally, we briefly discuss the parameter dependencies and interpretations of the allowed values of the coefficients on a particularly interesting UV complete model namely, Minimal Supersymmetric Standard Model.

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