论文标题

测量LHC处的顶部能量不对称:QCD和SMEFT解释

Measuring the top energy asymmetry at the LHC: QCD and SMEFT interpretations

论文作者

Basan, Alexander, Berta, Peter, Masetti, Lucia, Vryonidou, Eleni, Westhoff, Susanne

论文摘要

顶级喷射生产中的能量不对称性是可观察到的最高电荷不对称性,该不对称性是为LHC设计的。我们在增强的运动学状态中进行了现实的分析,包括Parton淋浴的影响,强环化和预期的实验不确定性。我们在粒子级别的预测表明,标准模型中的能量不对称性可以在运行3期间的显着性为3σ$,并且在HL-LHC上具有超过$5σ$的意义。除了标准模型之外,能量不对称是对新物理学的敏感探针,并与顶级夸克结合。在标准模型有效场理论的框架中,我们表明能量不对称对有效四夸克相互作用的敏感性与其他顶级可观察物相当,并且可以解决当前LHC拟合中的盲点方向。我们建议将能量不对称性作为重要观察到的重要性观察到顶级扇区的新物理。

The energy asymmetry in top-antitop-jet production is an observable of the top charge asymmetry designed for the LHC. We perform a realistic analysis in the boosted kinematic regime, including effects of the parton shower, hadronization and expected experimental uncertainties. Our predictions at particle level show that the energy asymmetry in the Standard Model can be measured with a significance of $3σ$ during Run 3, and with more than $5σ$ significance at the HL-LHC. Beyond the Standard Model the energy asymmetry is a sensitive probe of new physics with couplings to top quarks. In the framework of the Standard Model Effective Field Theory, we show that the sensitivity of the energy asymmetry to effective four-quark interactions is higher or comparable to other top observables and resolves blind directions in current LHC fits. We suggest to include the energy asymmetry as an important observable in global searches for new physics in the top sector.

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