论文标题

Sudakov的解决方案抑制了Balitsky-Kovchegov方程及其在HERA数据中的应用

Solution to the Sudakov suppressed Balitsky-Kovchegov equation and its application to the HERA data

论文作者

Xiang, Wenchang, Wang, Mengliang, Cai, Yanbing, Zhou, Daicui

论文摘要

我们通过分析求解Sudakov抑制了Balitsky-Kovchegov的演化方程,并在饱和区域的固定耦合常数和运行的耦合常数。 The analytic solution of the $S$-matrix shows the $\exp(\mathcal{O}(η^2))$ rapidity dependence of the solution with the fixed coupling constant is replaced by $\exp(\mathcal{O}(η^{3/2}))$ dependence in the smallest dipole running coupling case rather than obeying the law found in our previous publication, in which一旦将QCD耦合从固定的耦合切换到最小的偶极子运行的耦合处方,一旦$ \ exp(\ mathcal {o}(η))的近级订单演变方程的所有解决方案均符合$ \ exp(\ mathcal {o}(η))。这一发现表明,Sudakov中亚领双对数的校正抑制了进化方程很重要,这补偿了通过运行耦合效应产生的偶极幅度的进化减少的一部分。为了测试分析结果,我们计算了Sudakov抑制进化方程的数值解,数值结果证实了分析结果。此外,我们使用进化方程的数值解决方案来符合HERA数据。它表明,Sudakove抑制的演化方程可以使数据质量良好。

We analytically solve the Sudakov suppressed Balitsky-Kovchegov evolution equation with the fixed and running coupling constants in the saturation region. The analytic solution of the $S$-matrix shows the $\exp(\mathcal{O}(η^2))$ rapidity dependence of the solution with the fixed coupling constant is replaced by $\exp(\mathcal{O}(η^{3/2}))$ dependence in the smallest dipole running coupling case rather than obeying the law found in our previous publication, in which all the solutions of the next-to-leading order evolution equations comply with $\exp(\mathcal{O}(η))$ rapidity dependence once the QCD coupling is switched from the fixed coupling to the smallest dipole running coupling prescription. This finding indicates that the corrections of the sub-leading double logarithms in the Sudakov suppressed evolution equation are significant, which compensate part of the evolution decrease of the dipole amplitude made by running coupling effect. To test the analytic findings, we calculate the numerical solutions of the Sudakov suppressed evolution equation, the numerical results confirm the analytic outcomes. Moreover, we use the numerical solutions of the evolution equation to fit the HERA data. It shows that the Sudakove suppressed evolution equation can give good quality fit to the data.

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