论文标题
标量Yukawa场理论中分解的基础知识
Basics of factorization in a scalar Yukawa field theory
论文作者
论文摘要
量子染色体动力学(QCD)的分解定理同样适用于需要重新归一化但直接计算更加简单的大多数简单量子场理论。使用这些简单的理论可以方便地应对分解程序的限制以及检查Parton密度函数(PDF)的一般特性或其他相关函数,这些功能可能是对过程的分解描述所必需的。考虑到这一观点,我们回顾了对深度非弹性散射(DIS)和半包含的深度非弹性散射(SIDIS)横截面中实际标量Yukawa场理论中分解的步骤。在Sidis的情况下,我们说明了如何分离小型横向动量区域,其中需要从纯粹的沿着纯净的大横向动量区域分离横向动量依赖性(TMD)PDF,并检查了跨磁功率校正的影响。我们还回顾了在横向坐标空间中制定TMD分解的步骤,并研究转换为众所周知的$ B _*$ - 方案的效果。在Yukawa理论中,我们研究了切换到广义Parton模型(GPM)方法的后果,并与完全分解的方法进行比较。我们的结果突出了需要解决QCD中类似或类似问题的必要性。
The factorization theorems of quantum chromodynamics (QCD) apply equally well to most simple quantum field theories that require renormalization but where direct calculations are much more straightforward. Working with these simpler theories is convenient for stress-testing the limits of the factorization program and for examining general properties of the parton density functions (pdfs) or other correlation functions that might be necessary for a factorized description of a process. With this view in mind, we review the steps of factorization in a real scalar Yukawa field theory for both deep inelastic scattering (DIS) and semi-inclusive deep inelastic scattering (SIDIS) cross sections. In the case of SIDIS, we illustrate how to separate the small transverse momentum region, where transverse momentum dependent (TMD) pdfs are needed, from a purely collinear large transverse momentum region, and we examine the influence of subleading power corrections. We also review the steps for formulating TMD factorization in transverse coordinate space, and we study the effect of transforming to the well-known $b_*$-scheme. Within the Yukawa theory, we investigate the consequences of switching to a generalized parton model (GPM) approach, and compare with a fully factorized approach. Our results highlight the need to address similar or analogous issues in QCD.