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Pion Structure Function and Violation of the Momentum Sum Rule

机译:介子结构函数与动量和规则的违反

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摘要

We present a method to evaluate the pion structure functions from a box diagram calculation. Pion and constituent quark fields are coupled through the simplest pseudoscalar coupling. The γ~*π→ qq cross-section is evaluated and related to the structure functions. We then show that the introduction of non-perturbative effects, related to the pion size and preserving gauge invariance, provides us with a straighforward relation with the quark distribution. It is predicted that higher-twist terms become negligible for Q~2 larger than about 2 GeV~2 and that quarks in the pion have a momentum fraction smaller than in the proton. We enlarge the discussion concerning this violation of the momentum sum rule, emphasizing that the sum rule is recovered in the chiral limit and also when the finite size condition is not imposed.
机译:我们提出了一种从箱形图计算中评估介子结构函数的方法。介子和构成夸克场通过最简单的伪标量耦合耦合。评估γ〜*π→qq横截面并与结构函数相关。然后,我们表明,引入的非扰动效应与介子的大小和计量规的不变性有关,为我们提供了与夸克分布的直接关系。据预测,对于大于约2 GeV〜2的Q〜2,较高扭转项可以忽略不计,并且介子中的夸克具有比质子小的动量分数。我们扩大了关于违反动量求和规则的讨论,强调求和规则是在手性极限中以及在没有施加有限大小条件时恢复的。

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