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首页> 外文期刊>Nuclear physics, B >Mixed QCD-electroweak O(α_sα) corrections to Drell-Yan processes in the resonance region: Pole approximation and non-factorizable corrections
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Mixed QCD-electroweak O(α_sα) corrections to Drell-Yan processes in the resonance region: Pole approximation and non-factorizable corrections

机译:共振区域中Drell-Yan过程的混合QCD电弱O(α_sα)校正:极点逼近和不可分解校正

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摘要

Drell-Yan-like W-boson and Z-boson production in the resonance region allows for high-precision measurements that are crucial to carry experimental tests of the Standard Model to the extremes, such as the determination of the W-boson mass and the effective weak mixing angle. In this article, we establish a framework for the calculation of the mixed QCD-electroweak O(α_sα) corrections to Drell-Yan processes in the resonance region, which are one of the main remaining theoretical uncertainties. We describe how the Standard Model prediction can be successfully performed in terms of a consistent expansion about the resonance poles, which classifies the corrections in terms of factorizable and non-factorizable contributions. The former can be attributed to the W/Z production and decay subprocesses individually, while the latter link production and decay by soft-photon exchange. At next-to-leading order we compare the full electroweak corrections with the pole-expanded approximations, confirming the validity of the approximation. At O(α_sα), we describe the concept of the expansion and explicitly give results on the non-factorizable contributions, which turn out to be phenomenologically negligible. Our results, thus, demonstrate that for phenomenological purposes the O(α_sα) corrections can be factorized into terms associated with initial-state and/or final-state corrections. Moreover, we argue that the factorization properties of the non-factorizable corrections at O(α_sα) from lower-order O(α_s) graphs generalize to any order in O(α_s~n α).
机译:共振区域中类似Drell-Yan的W玻色子和Z玻色子的产生允许进行高精度测量,这对于将标准模型的实验测试进行到极端是至关重要的,例如确定W玻色子质量和有效弱混合角。在本文中,我们建立了一个框架,用于计算共振区域内Drell-Yan过程的混合QCD-电弱O(α_sα)校正,这是主要的理论不确定性之一。我们描述了如何根据共振极的一致扩展成功地执行标准模型预测,从而根据可分解和不可分解的贡献对修正进行分类。前者可归因于W / Z产生和衰变子过程,而后者可通过软光子交换联系产生和衰变。在下一个领先的阶上,我们将完整的电弱校正与极点展开近似进行比较,从而确认了近似的有效性。在O(α_sα)处,我们描述了扩展的概念,并明确地给出了不可分解贡献的结果,结果在现象学上可以忽略不计。因此,我们的结果表明,出于现象学目的,可以将O(α_sα)校正因子分解为与初始状态和/或最终状态校正相关的项。此外,我们认为,低阶O(α_s)图在O(α_sα)处不可分解校正的分解性质可推广到O(α_s〜nα)的任何阶数。

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