论文标题

NLO QCD校正为shell $ {t \ bar {t} w^\ pm} $在LHC上的生产:相关性和不对称

NLO QCD corrections to off-shell ${t\bar{t}W^\pm}$ production at the LHC: Correlations and Asymmetries

论文作者

Bevilacqua, Giuseppe, Bi, Huan-Yu, Hartanto, Heribertus Bayu, Kraus, Manfred, Nasufi, Jasmina, Worek, Malgorzata

论文摘要

根据ATLAS协作的报道,在Multi-Lepton Plus $ t \ bar {t} w^\ pm $过程中的理论预测和实验数据之间的最新差异,表明需要更准确的理论预测和高精度的观察值来限制这种新的物理学场景。为此,我们采用NLO QCD计算,具有完整的外壳顶部夸克效应,以提供理论预测,以预测$ {\ cal r} =σ_{t \ bar {t} w^+}/σ_{根据$ b $ -JET的横向动量,我们获得了$ 2 \%-3 \%$ $ {\ cal r} $的理论精确度,这应该有助于对新的物理效应进行一些启示,这些物理效应只有一旦足够精确的标准模型的理论预测才能揭示自己。此外,由这些差异触发,我们在$ t \ bar {t} w^\ pm $生产过程中重新检查顶级夸克及其衰减产品的电荷不对称性。在电荷不对称的情况下,对此通道中可能的新物理学的手性质具有独特的敏感,因此获得了低于$ 15 \%$的理论不确定性。此外,通过与狭窄宽度近似中的预测进行明确比较,对顶部夸克衰减建模的影响进行了审查。

Recent discrepancies between theoretical predictions and experimental data in multi-lepton plus $b$-jets analyses for the $t\bar{t}W^\pm$ process, as reported by the ATLAS collaboration, have indicated that more accurate theoretical predictions and high precision observables are needed to constrain numerous new physics scenarios in this channel. To this end we employ NLO QCD computations with full off-shell top quark effects included to provide theoretical predictions for the ${\cal R}= σ_{t\bar{t}W^+}/σ_{t\bar{t}W^-}$ cross section ratio at the LHC with $\sqrt{s}=13$ TeV. Depending on the transverse momentum cut on the $b$-jet we obtain $2\% -3 \%$ theoretical precision on ${\cal R}$, which should help to shed some light on new physics effects that can reveal themselves only once sufficiently precise Standard Model theoretical predictions are available. Furthermore, triggered by these discrepancies we reexamine the charge asymmetry of the top quark and its decay products in the $t\bar{t}W^\pm$ production process. In the case of charge asymmetries, that are uniquely sensitive to the chiral nature of possible new physics in this channel, theoretical uncertainties below $15\%$ are obtained. Additionally, the impact of the top quark decay modelling is scrutinised by explicit comparison with predictions in the narrow-width approximation.

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