论文标题
软滴剂修饰的辐射事件形状
Soft-drop grooming for hadronic event shapes
论文作者
论文摘要
强子碰撞最终状态的软滴剂修饰有可能显着降低非扰动校正的影响,尤其是基本的事实贡献。最终,这将使准确的扰动预测与实验测量更直接进行比较。在这项研究中,我们考虑了软滴的修饰Dijet事件形状。我们得出所需的一般结果,需要将合适的事件形状变量重新召集到近级为核对对数(NLL)精度与精确临近领先顺序(NLO)QCD矩阵元素相匹配。我们使用Sherpa事件生成器框架中的凯撒形式主义的实现来编译对横向直截了当形状精确的预测。我们根据与Parton Showers相匹配的NLO QCD矩阵元素的最先进的Parton和强子级预测来补充这一点。我们探讨了通过考虑广泛的软滴参数来减轻粒子级和基于轨道的横向推力测量值的非扰动校正的潜力。我们发现,在删除基础事件方面,软滴剂的修饰确实非常有效。这激发了将来的实验测量值与精确的QCD预测进行比较,并用于限制蒙特 - 卡洛模拟中的非扰动模型。
Soft-drop grooming of hadron-collision final states has the potential to significantly reduce the impact of non-perturbative corrections, and in particular the underlying-event contribution. This eventually will enable a more direct comparison of accurate perturbative predictions with experimental measurements. In this study we consider soft-drop groomed dijet event shapes. We derive general results needed to perform the resummation of suitable event-shape variables to next-to-leading logarithmic (NLL) accuracy matched to exact next-to-leading order (NLO) QCD matrix elements. We compile predictions for the transverse-thrust shape accurate to NLO+NLL' using the implementation of the CAESAR formalism in the Sherpa event generator framework. We complement this by state-of-the-art parton- and hadron-level predictions based on NLO QCD matrix elements matched with parton showers. We explore the potential to mitigate non-perturbative corrections for particle-level and track-based measurements of transverse thrust by considering a wide range of soft-drop parameters. We find that soft-drop grooming indeed is very efficient in removing the underlying event. This motivates future experimental measurements to be compared to precise QCD predictions and employed to constrain non-perturbative models in Monte-Carlo simulations.