Infrared Effects

J. Iliopoulos, T. Tomaras
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引用次数: 1

Abstract

It is shown that the presence of zero mass particles makes the elements of the S-matrix divergent. We explain the physical origin of such divergences. We argue that they are due to the long range of the interactions which violate the assumptions we made when we derived the asymptotic conditions for scattering. We study these divergences in the particular case of QED at tree, as well as one-loop level and present the Bloch–Nordsieck solution. We show that the cancellation of infrared divergences among virtual exchanged and real emitted soft photons is true to all orders in the perturbation expansion and we obtain the Sudakov double logarithm formula for Coulomb scattering.
红外效果
结果表明,零质量粒子的存在使s矩阵的元素发散。我们解释这种分歧的物理起源。我们认为,它们是由于相互作用的长范围,这违反了我们在推导散射的渐近条件时所作的假设。我们在树和单环水平上研究了QED的这些散度,并给出了Bloch-Nordsieck解。我们证明了在微扰展开中,虚交换软光子和实发射软光子之间红外散度的消去对所有阶都成立,并得到了库仑散射的Sudakov双对数公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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