Several Topics on Transverse Momentum-Dependent Fragmentation Functions

Kai-bao Chen, Tianbo Liu, Yu-kun Song, Shu-yi Wei
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引用次数: 3

Abstract

The hadronization of a high-energy parton is described by fragmentation functions which are introduced through QCD factorizations. While the hadronization mechanism per se remains uknown, fragmentation functions can still be investigated qualitatively and quantitatively. The qualitative study mainly concentrates on extracting genuine features based on the operator definition in quantum field theory. The quantitative research focuses on describing a variety of experimental data employing the fragmentation function given by the parameterizations or model calculations. With the foundation of the transverse-momentum-dependent factorization, the QCD evolution of leading twist transverse-momentum-dependent fragmentation functions has also been established. In addition, the universality of fragmentation functions has been proven, albeit model-dependently, so that it is possible to perform a global analysis of experimental data in different high-energy reactions. The collective efforts may eventually reveal important information hidden in the shadow of nonperturbative physics. This review covers the following topics: transverse-momentum-dependent factorization and the corresponding QCD evolution, spin-dependent fragmentation functions at leading and higher twists, several experimental measurements and corresponding phenomenological studies, and some model calculations.
关于横向动量相关破碎函数的几个问题
高能部分子的强子化是通过QCD分解引入的碎片函数来描述的。虽然硬离子化机制本身仍然未知,但碎片化功能仍然可以定性和定量地研究。定性研究主要集中在量子场论中基于算子定义的真特征提取上。定量研究的重点是利用参数化或模型计算给出的碎片函数来描述各种实验数据。在横向动量相关分解的基础上,建立了前导扭转横向动量相关破碎函数的QCD演化。此外,碎片函数的普适性已被证明,尽管依赖于模型,因此有可能对不同高能反应的实验数据进行全局分析。集体的努力可能最终揭示隐藏在非摄动物理阴影下的重要信息。这篇综述涵盖了以下主题:横向动量依赖的因式分解和相应的QCD演化,自旋依赖的前导和更高扭转的碎片函数,一些实验测量和相应的现象学研究,以及一些模型计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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