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Infrared and Collinear Divergences in Gauge Theories

机译:量规理论中的红外和共线散度

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The problem of infrared and collinear divergences is considered within the framework of perturbation theory and the scattering operator redefinition method. IR divergent processes in electrodynamics and gravitation (perturbation theory) are described, and for the case of electrodynamics a scattering operator free from IR divergences is constructed. For the massless electrodynamics model, a recipe for constructing a scattering operator free from both IR and collinear divergences is given. The meaning of experimental parameters entering the final formulas is discussed, and it is shown that the S-matrix factorization (i.e., the approximate independence of hard and soft processes) makes the theorem on the cancellation of divergences in observables trivial. A method for finding divergences in theories with multiparticle vertices is presented.
机译:在摄动理论和散射算子重新定义方法的框架内考虑了红外和共线发散的问题。描述了电动力学和万有引力中的红外发散过程(扰动理论),对于电动力学,构造了一个没有红外发散的散射算子。对于无质量电动力学模型,给出了构造没有IR和共线发散的散射算子的方法。讨论了进入最终公式的实验参数的含义,并且表明S矩阵分解(即,硬过程和软过程的近似独立性)使消除可观测量中的散度的定理变得微不足道。提出了一种寻找具有多粒子顶点的理论分歧的方法。

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