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首页> 外文期刊>Physical review, D >Next-to-next-to-leading order QCD analysis of spin-dependent parton distribution functions and their uncertainties: Jacobi polynomials approach
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Next-to-next-to-leading order QCD analysis of spin-dependent parton distribution functions and their uncertainties: Jacobi polynomials approach

机译:旋转依赖Parton分布功能及其不确定因素的下一次下一次QCD分析:Jacobi多项式方法

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摘要

We present a first QCD analysis of next-to-next-leading-order (NNLO) contributions of the spin-dependent parton distribution functions (PPDFs) in the nucleon and their uncertainties using the Jacobi polynomial approach. Having the NNLO contributions of the quark-quark and gluon-quark splitting functions in perturbative QCD [Nucl. Phys. B889, 351 (2014)], one can obtain the evolution of longitudinally polarized parton densities of hadrons up to NNLO accuracy of QCD. Very large sets of recent and up-to-date experimental data of spin structure functions of the proton g(1)(p), neutron g(1)(n), and deuteron g(1)(d) have been used in this analysis. The predictions for the NNLO calculations of the polarized parton distribution functions as well as the proton, neutron and deuteron polarized structure functions are compared with the corresponding results of the NLO approximation. We form a mutually consistent set of polarized PDFs due to the inclusion of the most available experimental data including the recently high-precision measurements from COMPASS16 experiments [Phys. Lett. B 753, 18 (2016)]. We have performed a careful estimation of the uncertainties using the most common and practical method, the Hessian method, for the polarized PDFs originating from the experimental errors. The proton, neutron and deuteron structure functions and also their first moments, Gamma(p,n,d), are in good agreement with the experimental data at small and large momentum fractions of x. We will discuss how our knowledge of spin-dependence structure functions can improve at small and large values of x by the recent COMPASS16 measurements at CERN, the PHENIX and STAR measurements at RHIC, and at the future proposed colliders such as the Electron-Ion Collider.
机译:我们在核子中旋转依赖Parton分布函数(PPDF)的下一阶(NNLO)贡献的第一个QCD分析及其使用Jacobi多项式方法的不确定性。在扰动QCD中具有Quark-Quark和Gluon-Quark拆分功能的NNLO贡献[Nucl。物理。 B889,351(2014)],人们可以获得具有QCD的NNLO精度的强度纵向极化的Parton密度的演变。已经使用了质子g(1)(p),中子g(1)(n)和氘代g(1)(d)的旋转结构功能的非常大的近期和最新的实验数据。这个分析。与NLO近似的相应结果进行比较了对极化分布分布功能以及质子,中子和氘偏振结构功能的NNLO计算的预测。由于包含来自COMPACT16实验的最近高精度测量的最易用的实验数据,我们形成了一组相互一致的极化PDF。吧。 B 753,18(2016)]。我们对使用最常见和实用的方法,Hessian方法进行了仔细估计的不确定性,用于源自实验误差的偏振PDF。质子,中子和氘核结构功能以及它们的第一矩,γ(p,n,d)与x的小而大动量分数的实验数据很好。我们将讨论如何通过最近的CORNER16测量在RHIC的CORNER16测量的X型X的小而大的X的小而大的X的知识,以及在未来的建议的煤机,如电子离子撞机。

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