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Mystery of Bloom-Gilman duality: A light-front holographic QCD perspective

机译:Bloom-Gilman Tuegity的奥秘:一个光线全息QCD透视

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Light-front wave functions motivated by holographic constructions are used to study Bloom-Gilman duality, a feature of deep inelastic scattering. Separate expressions for structure functions in terms of quark and hadronic degrees of freedom (involving transition form factors) are presented, with an ultimate goal of obtaining a relationship between the two expressions. A specific two-parton model is defined and resonance transition form factors are computed using previously derived light-front wave functions. A new form of global duality (integral over all values of x between 0 and 1) is derived from the valence quark-number sum rule. Using a complete set of hadronic states is necessary for this new global duality to be achieved, and the previous original work does not provide such a set. This feature is remedied by amending the model to include a longitudinal confining potential, and the resulting complete set is sufficient to carry out the study of Bloom-Gilman duality. Specific expressions for transition form factors are obtained and all are shown to fall as 1 / Q 2 , at asymptotically large values. This is because the Feynman mechanism dominates the asymptotic behavior of the model. These transition form factors are used to assess the validity of the global and local duality sum rules, with the result that both are not satisfied within the given model. Evaluations of the hadronic expression for q ( x , Q 2 ) provide more details about this lack. This result is not a failure of the current model because it shows that the observed validity of both global and local forms of duality for deep inelastic scattering must be related to a feature of QCD that is deeper than completeness. Our simple present model suggests a prediction that Bloom-Gilman duality would not be observed if deep inelastic scattering experiments were to be made on the pion. The underlying origin of the duality phenomenon in deep inelastic scattering is deeply buried within the confinement aspects of QCD, and its origin remains a mystery.
机译:通过全息结构激励的光前波函数用于研究盛开的吉尔曼二元性,这是深非弹性散射的特征。呈现了在Quark和Theronic自由度(涉及转换形式因子)方面的结构功能的单独表达,最终目标是获得两个表达之间的关系。定义了特定的双Parton模型,并使用先前推导出的光前波函数来计算谐振转换形式因子。一种新的全局二元性(整数在0和1之间的所有值)源自价值Quark-Number Sum规则。使用一组完整的辐射状态是为了实现新的全球二元性,并且之前的原始工作没有提供这样的集合。通过修改模型来补救该特征,包括纵向限制潜力,并且所得到的完整组足以进行盛开的吉尔曼二元性的研究。获得过渡形成因子的特定表达,并且在渐近的情况下,所有被显示为1 / Q 2。这是因为Feynman机制占主导地位模型的渐近行为。这些转换形式因素用于评估全局和局部二元总和规则的有效性,结果表明两个都不满足于给定模型中。 Q(x,q 2)对Q(x,q 2)的评估提供了有关此缺乏的更多细节。此结果不是当前模型的故障,因为它表明,对于深度无弹性散射的全局和局部形式的二元性的观察到的有效性必须与QCD的特征有关,这是比完整性更深的QCD。我们简单的现在模型表明,如果在孔上进行深度无弹性散射实验,则不会观察到盛开的吉尔曼二元性。在QCD的限制方面,深入无弹性散射中的二元现象的底层起源深深地埋藏,其起源仍然是一个谜。

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