论文标题

通过矢量 - 玻色融合产生双基因的精确预测

Precise predictions for double-Higgs production via vector-boson fusion

论文作者

Dreyer, Frédéric A., Karlberg, Alexander, Lang, Jean-Nicolas, Pellen, Mathieu

论文摘要

通过近代到领先顺序(NNLO)QCD准确性以及近代领先顺序(NLO)电动校正(EW)校正的理论预测,用于通过矢量 - 玻璃体融合的双HIGGS生产过程的差异可观察到。虽然先前已知QCD校正,但首次在此计算EW。对于在LHC上进行现实的实验设置获得的数值结果,并以基准横截面和差分分布的形式呈现。在此设置中,我们发现在NNLO QCD校正中使用的VBF近似在次级级别是准确的。我们发现,基准量内的NLO EW校正为$ -6.1 \%$,使其与NLO QCD校正的顺序几乎相同。在某些运动区域,它们可以生长到$ -30 \%$的大小,使其成为主要的辐射校正。当EW校正与NNLO QCD校正结合使用时,我们发现总校正为$ -14.8 \%$。因此,此处介绍的结果包括通过矢量 - 玻璃融合产生双HIGGS生产的最新理论谓词,这对LHC的高亮度程序具有价值。

Theoretical predictions with next-to-next-to-leading order (NNLO) QCD accuracy combined with the next-to-leading order (NLO) electroweak (EW) corrections are presented for differential observables of the double-Higgs production process via vector-boson fusion. While the QCD corrections were previously known, the EW ones are computed here for the first time. The numerical results are obtained for a realistic experimental set-up at the LHC and are presented in the form of fiducial cross sections and differential distributions. Within this setup we find that the VBF approximation employed in the NNLO QCD correction is accurate at the sub-percent level. We find that the NLO EW corrections within the fiducial volume are $-6.1\%$, making them of almost the same order as the NLO QCD corrections. In some kinematic regions they can grow as large as $-30\%$ making them the dominant radiative corrections. When the EW corrections are combined with the NNLO QCD corrections we find a total correction of $-14.8\%$. The results presented here thus comprise the state-of-the-art theoretical predicition for the double-Higgs production via vector-boson fusion, which will be of value to the high-luminosity programme at the LHC.

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