论文标题
QED中四环尖缘异常维度的全角依赖性
The full angle-dependence of the four-loop cusp anomalous dimension in QED
论文作者
论文摘要
依赖角度的尖缘异常尺寸控制着来自较重颗粒(例如顶部夸克)之间软gluon交换的分歧。我们专注于与问题有关的贡献,并计算第一个真正的非平面术语。它们出现在四个循环中,与色彩空间中的四分之一的卡西米尔操作员成正比。将我们的通用量规理论的结果专门为u(1),我们获得了完整的QED四环依赖性尖端异常尺寸。虽然更复杂的功能出现在中间步骤中,但分析答案仅取决于在统一第四根根基上具有奇异性的多个多组载体。它可以用四个理性结构编写,并且包含最大先验重量的功能。尽管存在这种复杂性,但我们发现,在大多数运动学范围内,答案在数值上诱人地接近了适当的单环公式。我们采取了分析结果的几个限制,该结果可作为检查,并允许我们获得新的,供电的术语。在反行线极限中,对应于在阈值下产生两个巨大颗粒的限制,我们发现跨座的功率校正消失了。最后,我们计算循环中标量的四分之一Casimir贡献。考虑到超对称分解,我们在最大超对称仪表理论中将第一个非平面校正引入了夸克反夸克潜力。
The angle-dependent cusp anomalous dimension governs divergences coming from soft gluon exchanges between heavy particles, such as top quarks. We focus on the matter-dependent contributions and compute the first truly non-planar terms. They appear at four loops and are proportional to a quartic Casimir operator in color space. Specializing our general gauge theory result to U(1), we obtain the full QED four-loop angle-dependent cusp anomalous dimension. While more complicated functions appear at intermediate steps, the analytic answer depends only on multiple polylogarithms with singularities at fourth roots of unity. It can be written in terms of four rational structures, and contains functions of up to maximal transcendental weight seven. Despite this complexity, we find that numerically the answer is tantalizingly close to the appropriately rescaled one-loop formula, over most of the kinematic range. We take several limits of our analytic result, which serves as a check and allows us to obtain new, power-suppressed terms. In the anti-parallel lines limit, which corresponds to production of two massive particles at threshold, we find that the subleading power correction vanishes. Finally, we compute the quartic Casimir contribution for scalars in the loop. Taking into account a supersymmetric decomposition, we derive the first non-planar corrections to the quark anti-quark potential in maximally supersymmetric gauge theory.