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在正向快度下与喷注相关联的矢量玻色子产生。

Vector boson production in association with a jet at forward rapidities.

作者信息

Gehrmann-De Ridder A, Gehrmann T, Glover E W N, Huss A, Walker D M

机构信息

1Institute for Theoretical Physics, ETH, CH-8093 Zürich, Switzerland.

2Department of Physics, University of Zürich, CH-8057 Zürich, Switzerland.

出版信息

Eur Phys J C Part Fields. 2019;79(6):526. doi: 10.1140/epjc/s10052-019-7010-2. Epub 2019 Jun 20.

Abstract

Final states with a vector boson and a hadronic jet allow one to infer the Born-level kinematics of the underlying hard scattering process, thereby probing the partonic structure of the colliding protons. At forward rapidities, the parton collisions are highly asymmetric and resolve the parton distributions at very large or very small momentum fractions, where they are less well constrained by other processes. Using theory predictions accurate to next-to-next-to-leading order (NNLO) in QCD for both and production in association with a jet at large rapidities at the LHC, we perform a detailed phenomenological analysis of recent LHC measurements. The increased theory precision allows us to clearly identify specific kinematical regions where the description of the data is insufficient. By constructing ratios and asymmetries of these cross sections, we aim to identify possible origins of the deviations, and highlight the potential impact of the data on improved determinations of parton distributions.

摘要

具有一个矢量玻色子和一个强子喷注的末态,使人们能够推断出潜在硬散射过程的初态运动学,从而探测碰撞质子的部分子结构。在正向快度区域,部分子碰撞高度不对称,能够分辨出非常大或非常小动量分数下的部分子分布,而在这些区域,它们受其他过程的约束较少。利用在LHC上大快度下与喷注关联产生W和Z玻色子过程的、精确到次下一个领先阶(NNLO)的QCD理论预言,我们对LHC最近的测量进行了详细的唯象分析。理论精度的提高使我们能够清楚地识别出数据描述不足的特定运动学区域。通过构建这些截面的比值和不对称性,我们旨在确定偏差的可能来源,并突出这些数据对改进部分子分布测定的潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f96/6593900/3087a2ddefe9/10052_2019_7010_Fig1_HTML.jpg

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