Parton distributions and lattice-QCD calculations: Toward 3D structure

IF 14.5 2区 物理与天体物理 Q1 PHYSICS, NUCLEAR Progress in Particle and Nuclear Physics Pub Date : 2021-11-01 DOI:10.1016/j.ppnp.2021.103908
Martha Constantinou , Aurore Courtoy , Markus A. Ebert , Michael Engelhardt , Tommaso Giani , Tim Hobbs , Tie-Jiun Hou , Aleksander Kusina , Krzysztof Kutak , Jian Liang , Huey-Wen Lin , Keh-Fei Liu , Simonetta Liuti , Cédric Mezrag , Pavel Nadolsky , Emanuele R. Nocera , Fred Olness , Jian-Wei Qiu , Marco Radici , Anatoly Radyushkin , Rui Zhang
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引用次数: 112

Abstract

The strong force which binds hadrons is described by the theory of quantum chromodynamics (QCD). Determining the character and manifestations of QCD is one of the most important and challenging outstanding issues necessary for a comprehensive understanding of the structure of hadrons. Within the context of the QCD parton picture, the parton distribution functions (PDFs) have been remarkably successful in describing a wide variety of processes. However, these PDFs have generally been confined to the description of collinear partons within the hadron. New experiments and facilities provide the opportunity to additionally explore the transverse structure of hadrons which is described by generalized parton distributions (GPDs) and transverse-momentum-dependent parton distribution functions (TMD PDFs). In our previous report Lin et al. (2018), we compared and contrasted the two main approaches used to determine the collinear PDFs: the first based on perturbative QCD factorization theorems, and the second based on lattice-QCD calculations. In the present report, we provide an update of recent progress on the collinear PDFs, and also expand the scope to encompass the generalized PDFs (GPDs and TMD PDFs). We review the current state of the various calculations, and consider what new data might be available in the near future. We also examine how a shared effort can foster dialog between the PDF and lattice-QCD communities, and yield improvements for these generalized PDFs.

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Parton分布和格子- qcd计算:面向三维结构
量子色动力学(QCD)理论描述了束缚强子的强力。确定QCD的性质和表现是全面理解强子结构所必需的最重要和最具挑战性的突出问题之一。在QCD部分图的上下文中,部分分布函数(pdf)在描述各种各样的过程方面非常成功。然而,这些pdf通常局限于强子内共线部分的描述。新的实验和设备提供了进一步探索由广义部分子分布(gpd)和横向动量相关部分子分布函数(TMD PDFs)描述的强子横向结构的机会。在我们之前的报告Lin等人(2018)中,我们比较和对比了用于确定共线pdf的两种主要方法:第一种基于微扰QCD分解定理,第二种基于格-QCD计算。在本报告中,我们提供了共线pdf的最新进展,并扩大了范围,包括广义pdf (gpd和TMD pdf)。我们回顾了各种计算的当前状态,并考虑在不久的将来可能会有哪些新数据可用。我们还研究了共享的努力如何促进PDF和格子- qcd社区之间的对话,并对这些通用PDF进行改进。
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来源期刊
Progress in Particle and Nuclear Physics
Progress in Particle and Nuclear Physics 物理-物理:核物理
CiteScore
24.50
自引率
3.10%
发文量
41
审稿时长
72 days
期刊介绍: Taking the format of four issues per year, the journal Progress in Particle and Nuclear Physics aims to discuss new developments in the field at a level suitable for the general nuclear and particle physicist and, in greater technical depth, to explore the most important advances in these areas. Most of the articles will be in one of the fields of nuclear physics, hadron physics, heavy ion physics, particle physics, as well as astrophysics and cosmology. A particular effort is made to treat topics of an interface type for which both particle and nuclear physics are important. Related topics such as detector physics, accelerator physics or the application of nuclear physics in the medical and archaeological fields will also be treated from time to time.
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