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On the gauge chosen by the bosonic open string

机译:在由松弦开弦选择的量规上

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String theory gives S matrix elements from which is not possible to read any gauge information. Using factorization we go off shell in the simplest and most naive way and we read which are the vertices suggested by string. To compare with the associated Effective Field Theory it is natural to use color ordered vertices. The α ′ = 0 color ordered vertices suggested by string theory are more efficient than the usual ones since the three gluon color ordered vertex has three terms instead of six and the four gluon one has one term instead of three. They are written in the so called Gervais–Neveu gauge. The full Effective Field Theory is in a generalization of the Gervais–Neveu gauge with α ′ corrections. Moreover a field redefinition is required to be mapped to the field used by string theory. We also give an intuitive way of understanding why string choose this gauge in terms of the minimal number of couplings necessary to reproduce the non-abelian amplitudes starting from color ordered ones.
机译:弦论给出了S个矩阵元素,无法从中读取任何量规信息。使用分解,我们以最简单,最幼稚的方式脱壳,并且读取了字符串建议的顶点。为了与相关的有效场理论进行比较,很自然地使用颜色排序的顶点。字符串理论提出的α'= 0色阶顶点比通常的顶点更有效率,因为三个胶子色阶顶点具有三个项而不是六个项,四个胶子色阶具有一个项而不是三个项。它们是用所谓的Gervais–Neveu量规编写的。完整的有效场理论是Gervais-Neveu规范在α'校正下的推广。此外,需要将字段重新定义映射到字符串理论所使用的字段。我们还提供了一种直观的方式来理解,为什么弦乐要根据从颜色有序的振幅开始再现非阿贝尔振幅所需的最少耦合数选择此量规。

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