Buonocore Luca, Devoto Simone, Grazzini Massimiliano, Kallweit Stefan, Mazzitelli Javier, Rottoli Luca, Savoini Chiara
Physik Institut, Universität Zürich, CH-8057 Zürich, Switzerland.
Dipartimento di Fisica, Università degli Studi di Milano and INFN, Sezione di Milano, I-20133 Milano, Italy.
Phys Rev Lett. 2023 Dec 8;131(23):231901. doi: 10.1103/PhysRevLett.131.231901.
The production of a top-antitop quark pair in association with a W boson (tt[over ¯]W) is one of the heaviest signatures currently probed at the Large Hadron Collider. Since the first observation reported in 2015, the corresponding rates have been found to be consistently higher than the standard model predictions, which are based on next-to-leading order calculations in the QCD and electroweak interactions. We present the first next-to-next-to-leading order QCD computation of tt[over ¯]W production at hadron colliders. The calculation is exact, except for the finite part of the two-loop virtual corrections, which is estimated using two different approaches that lead to consistent results within their uncertainties. We combine the newly computed next-to-next-to-leading order QCD corrections with the complete next-to-leading order QCD plus electroweak results, thus obtaining the most advanced perturbative prediction available to date for the tt[over ¯]W inclusive cross section. The tension with the latest ATLAS and CMS results remains at the 1σ-2σ level.
与W玻色子相关联产生的顶-反顶夸克对(tt[上划线]W)是大型强子对撞机目前探测到的最重的信号之一。自2015年首次观测报告以来,已发现相应的产率一直高于基于量子色动力学(QCD)和电弱相互作用的次领头阶计算的标准模型预测。我们给出了强子对撞机上tt[上划线]W产生的首个次次领头阶QCD计算。该计算是精确的,除了两圈虚拟修正的有限部分,这部分使用两种不同方法进行估计,在其不确定性范围内得到了一致的结果。我们将新计算的次次领头阶QCD修正与完整的次领头阶QCD加电弱结果相结合,从而获得了迄今为止tt[上划线]W包含截面最先进的微扰预测。与最新的ATLAS和CMS结果的差异仍处于1σ - 2σ水平。