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Towards a fitting procedure to deeply virtual meson production - the next-to-leading order case

机译:进行深虚拟介子生产的拟合程序-次要订单案例

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Based on the collinear factorization approach, we present a comprehensive perturbative next-to-leading (NLO) analysis of deeply virtual meson production (DVMP). Our representation in conformal Mellin space can serve as basis for a global fitting procedure to access generalized parton distributions from experimental measurements of DVMP and deeply virtual Compton scattering (DVCS). We introduce a rather general formalism for the evaluation of conformal moments that can be developed further beyond the considered order. We also confirm previous diagrammatical findings in the pure singlet quark channel. Finally, we use the analytic properties of the hard scattering amplitudes to estimate qualitatively the size of radiative corrections and illustrate these considerations with some numerical examples. The results suggest that global NLO GPD fits,including both DVMP and DVCS data, could be more stable than often feared.
机译:基于共线性分解方法,我们提出了对深虚拟介子生成(DVMP)的全面扰动从前到后(NLO)分析。我们在共形的Mellin空间中的表示可以用作全局拟合过程的基础,该过程可以从DVMP和深虚拟康普顿散射(DVCS)的实验测量中访问广义的parton分布。我们引入了一种相当笼统的形式主义来评估共形矩,它可以超越所考虑的顺序而进一步发展。我们还确认了先前在纯单重态夸克通道中的图解发现。最后,我们使用硬散射幅度的解析属性来定性估计辐射校正的大小,并通过一些数值示例说明这些考虑因素。结果表明,包括DVMP和DVCS数据在内的全球NLO GPD拟合可能比通常担心的要稳定。

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