论文标题

Gluon分布及其在Ioffe时间分布中的应用

Gluon distributions and their applications to Ioffe-time distributions

论文作者

Sufian, Raza Sabbir, Liu, Tianbo, Paul, Arpon

论文摘要

我们研究了非偏振和极化的GLUON分布及其在IOFFE时间分布中的应用,这与Parton分布函数的晶格QCD计算有关。在基于大动量分数$ x $的扰动QCD的计数规则的指导下,以及小$ x $以gluon耦合的颜色连贯性,我们以螺旋性为基础。通过拟合非极化的GLUON分布,我们参数化的推断极化GLUON分布与全球分析中的分布相符。还进行了与非极化和极化的GLUON分布的同时拟合,以探索模型的不确定性。与全球分析的协议支持$(1-x)$抑制相对于螺旋性分配的分布的螺旋性静脉分布的功率。相应的IOFFE时间分布及其渐近扩展是根据Gluon分布计算的。我们的IOFFE时间分布结果可以为晶格QCD数据外推向缺乏精确的Gluonic矩阵元素的区域提供指导。因此,它们可以帮助调节与从第一原则计算中提取Gluon分布相关的不良反问题,这些分布在有限的核子动量范围内可用,以及Gluonic电流之间的空间分离。鉴于在很大的IOFFE时获得晶格QCD数据的各种限制,现象学方法可以提供重要的补充信息,以提取整个$ x $区域中的Gluon分布。还讨论了从现象学上确定的IOFFE时间分布中的Parton分布进行的当代第一原则计算中,在大型IOFFE时间区域中研究了更高扭转的效果和其他系统不确定性的可能性。

We investigate unpolarized and polarized gluon distributions and their applications to the Ioffe-time distributions, which are related to lattice QCD calculations of parton distribution functions. Guided by the counting rules based on the perturbative QCD at large momentum fraction $x$ and the color coherence of gluon couplings at small $x$, we parametrize gluon distributions in the helicity basis. By fitting the unpolarized gluon distribution, the inferred polarized gluon distribution from our parametrization agrees with the one from global analysis. A simultaneous fit to both unpolarized and polarized gluon distributions is also performed to explore the model uncertainty. The agreement with the global analysis supports the $(1-x)$ power suppression of the helicity-antialigned distribution relative to the helicity-aligned distribution. The corresponding Ioffe-time distributions and their asymptotic expansions are calculated from the gluon distributions. Our results of the Ioffe-time distributions can provide guidance to the extrapolation of lattice QCD data to the region lacking precise gluonic matrix elements. Therefore, they can help regulate the ill-posed inverse problem associated with extracting the gluon distributions from discrete data from first-principle calculations, which are available in a limited range of the nucleon momentum and the spatial separation between the gluonic currents. Given various limitations in obtaining lattice QCD data at large Ioffe time, phenomenological approaches can provide important complementary information to extract the gluon distributions in the entire $x$ region. The possibility of investigating higher-twist effects and other systematic uncertainties in the contemporary first-principle calculations of parton distributions from phenomenologically well-determined Ioffe-time distributions in the large Ioffe-time region is also discussed.

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