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Precise predictions for same-sign W-boson scattering at the LHC

机译:大型强子对撞机同符号W玻色子散射的精确预测

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摘要

Vector-boson scattering processes are of great importance for the current run-II and future runs of the Large Hadron Collider. The presence of triple and quartic gauge couplings in the process gives access to the gauge sector of the Standard Model (SM) and possible new-physics contributions there. To test any new-physics hypothesis, sound knowledge of the SM contributions is necessary, with a precision which at least matches the experimental uncertainties of existing and forthcoming measurements. In this article we present a detailed study of the vector-boson scattering process with two positively-charged leptons and missing transverse momentum in the final state. In particular, we first carry out a systematic comparison of the various approximations that are usually performed for this kind of process against the complete calculation, at LO and NLO QCD accuracy. Such a study is performed both in the usual fiducial region used by experimental collaborations and in a more inclusive phase space, where the differences among the various approximations lead to more sizeable effects. Afterwards, we turn to predictions matched to parton showers, at LO and NLO: we show that on the one hand, the inclusion of NLO QCD corrections leads to more stable predictions, but on the other hand the details of the matching and of the parton-shower programs cause differences which are considerably larger than those observed at fixed order, even in the experimental fiducial region. We conclude with recommendations for experimental studies of vector-boson scattering processes.
机译:矢量玻色子散射过程对于“大型强子对撞机”的当前II期运行和未来运行至关重要。在此过程中,三重和四重量规耦合的存在使您可以访问标准模型(SM)的量规部门,并在那里可能获得新的物理学贡献。为了检验任何新物理学的假设,必须对SM的贡献有充分的了解,其精确度至少应与现有和即将进行的测量的实验不确定性相匹配。在本文中,我们对带有两个带正电荷的轻子且在最终状态下缺少横向动量的矢量-玻色子散射过程进行了详细研究。特别是,我们首先以LO和NLO QCD精度对通常针对该过程执行的各种近似与完整的计算进行系统的比较。这项研究是在实验合作所使用的通常基准区域以及更广泛的相空间中进行的,其中各个近似值之间的差异会导致更大的效果。然后,我们转到LO和NLO上与parton阵雨相匹配的预测:我们表明,一方面,将NLO QCD校正包括在内会导致更稳定的预测,但另一方面,匹配和parton的细节-Shower程序会导致差异,即使在实验基准区域,差异也要比固定顺序下的差异大得多。我们以矢量玻色子散射过程实验研究的建议作为结尾。

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