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The Matrix Element Method at next-to-leading order QCD for hadronic collisions: single top-quark production at the LHC as an example application

机译:用于辐射冲突的下面前导QCD的矩阵元素方法:LHC的单个顶部夸克生产为例应用

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A bstract Recently, a general algorithm to extend the Matrix Element Method (MEM) by taking into account next-to-leading-order (NLO) corrections in quantum chromodynamics (QCD) has been presented. In this article, the algorithm is applied to the most general case that coloured partons are encountered in the initial as well as the final state. This represents a substantial extension compared to previous work. As a concrete example, the production of single top quarks at the LHC is studied. We present in detail the generation of unweighted events following the NLO predictions. By treating these events as the result of a toy experiment, we show the first proof-of-principle application of the Matrix Element Method at NLO QCD for hadronic jet production. As an illustration, we study the determination of the top-quark mass. We find that — apart from elevating the powerful MEM to a sound theoretical foundation at NLO — the inclusion of the NLO corrections can lead to sizeable effects compared to the Matrix Element Method relying on leading-order predictions only. Furthermore, we find that the incorporation of the NLO corrections is mandatory to obtain reliable estimates of the theoretical uncertainties. In addition, this work shows that measuring the top-quark mass using the MEM in single top-quark production offers an interesting alternative to mass measurements in top-quark pair production.
机译:最近,已经介绍了通过考虑量子复态动力学(QCD)中的矩阵元素方法(MEM)扩展矩阵元素方法(MEM)的一般算法。在本文中,该算法应用于最常规情况,彩色部分在初始和最终状态下遇到。这表示与以前的工作相比的大量延伸。作为一个具体的例子,研究了LHC的单顶夸克的生产。我们详细介绍了NLO预测后的未加权事件。通过处理这些事件作为一个玩具实验的结果,我们将展示在NLO QCD第一验证的原理及应用矩阵元方法的强子喷生产。作为一名插图,我们研究了顶级夸克质量的确定。我们发现 - 除了将强大的MEM提升到NLO的声音理论基础之外 - 与仅依赖于领先订单预测的矩阵元素方法相比,包含NLO校正可能会导致相当大的效果。此外,我们发现NLO校正的融合是强制性的,以获得理论不确定性的可靠估计。此外,这项工作表明,在单一顶级夸克生产中使用MEM测量顶部夸克质量提供了顶级夸克对生产中的质量测量的有趣替代品。

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