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Soft fragmentation on the celestial sphere

机译:天体上的软碎片

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A bstract We develop two approaches to the problem of soft fragmentation of hadrons in a gauge theory for high energy processes. The first approach directly adapts the standard resummation of the parton distribution function’s anomalous dimension (that of twist-two local operators) in the forward scattering regime, using k _( T )-factorization and BFKL theory, to the case of the fragmentation function by exploiting the mapping between the dynamics of eikonal lines on transverse-plane to the celestial-sphere. Critically, to correctly resum the anomalous dimension of the fragmentation function under this mapping, one must pay careful attention to the role of regularization, despite the manifest collinear or infra- red finiteness of the BFKL equation. The anomalous dependence on energy in the celestial case, arising due to the mismatch of dimensionality between positions and angles, drives the differences between the space-like and time-like anomalous dimension of parton densities, even in a conformal theory. The second approach adapts an angular-ordered evolution equation, but working in 4 ? 2 ? dimensions at all angles. The two approaches are united by demanding that the anomalous dimension in 4 ? 2 ? dimensions for the parton distribution function determines the kernel for the angular-ordered evolution to all orders.
机译:BSTRACT我们在仪表理论中制定了两种对高能工艺理论的强子斑块的问题。第一种方法直接使用K_(T) - Factorization和BFKL理论,直接在前向散射方案中进行分组分布函数的异常维度(Wast-2本地运算符)的标准组合,以碎片功能的情况利用横向平面上尖端线的动态之间的映射到天体。批判性地,为了在这种映射下正确重新重新重新重新重建破碎函数的异常维度,必须仔细注意正规化的作用,尽管BFK1方程的明显共线或缺陷的有限性。由于位置和角度之间的维度不匹配而产生的天体壳体中的能量的异常依赖性,即使在一个共形理论中,也可以驱动Parton密度的空间和时间状异常维度之间的差异。第二种方法适应角度有序的演化方程,但在4中工作? 2?所有角度的尺寸。通过要求4中的异常维度来联合这两种方法是团结一致的? 2? PartOn分发功能的尺寸确定了所有订单的角度排序的演化的内核。

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