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Taming Landau singularities in QCD perturbation theory: The analytic approach 2.0

机译:QCD扰动理论中的驯服Landau奇点:分析方法2.0

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The aim of this topical article is to outline the fundamental ideas underlying the recently developed Fractional Analytic Perturbation Theory (FAPT) of QCD and present its main calculational tools together with key applications. For this, it is first necessary to review previous methods to apply QCD perturbation theory at low spacelike momentum scales, where the influence of the Landau singularities becomes inevitable. Several concepts are considered and their limitations are pointed out. The usefulness of FAPT is discussed in terms of two characteristic hadronic quantities: the perturbatively calculable part of the pion's electromagnetic form factor in the spacelike region and the Higgs-boson decay into a b b? pair in the timelike region. In the first case, the focus is on the optimization of the prediction with respect to the choice of the renormalization scheme and the dependence on the renormalization and the factorization scales. The second case serves to show that the application of FAPT to this reaction reaches already at the four-loop level an accuracy of the order of 1%, avoiding difficulties inherent in the standard perturbative expansion. The obtained results are compared with estimates from fixed-order and contour-improved QCD perturbation theory. Using the brand-new Higgs mass value of about 125 GeV, measured at the Large Hadron Collider (CERN), a prediction for Γ_(H→bb?)= 2.4 ± 0.15 MeV is extracted.
机译:本次要文章的目的是概述最近开发的QCD的分数分析扰动理论(FAPT)的基本思想,并将其主要计算工具与关键应用一起展示。为此,首先需要审查以前的方法来应用QCD扰动理论在低空间的动量尺度下,其中Landau奇点的影响变得不可避免。考虑了几个概念,并指出了他们的局限性。在两个特征的重整量方面讨论了FAPT的有用性:术后术后的垂直可分化的部分在空间区域中的电磁形状因子和HIGGS-&BOSON衰减成B B?在时间般的地区对。在第一种情况下,重点是关于选择重新运行方案的选择的优化和对重整化和分解尺度的依赖性。第二种案例表明,将FAPT对该反应的应用达到了四环水平,精度为1%的精度,避免了标准扰动扩张中固有的困难。将得到的结果与固定阶和轮廓改善QCD扰动理论的估计进行了比较。使用全新的HIGGS质量值约为125 GEV,在大型强子撞机(CERN)上测量,提取γ_(H→BB→)= 2.4±0.15MeV的预测。

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