论文标题

软共线有效理论中快速差异的一致治疗

Consistent treatment of rapidity divergence in soft-collinear effective theory

论文作者

Chay, Junegone, Kim, Chul

论文摘要

在软共线性有效理论中,我们分析了由于存在于不同相位空间的共线和软模式而引起的速度差异的结构。有效理论的概念应用于具有较大速度和速度较小的柔软模式的共线模式系统。集成了较大的长宽(共线)模式,以获得小比例(软)模式的有效理论。具有共线和软模式的完整精神应匹配到速度边界处的软理论,并且匹配过程正好成为零键的减法。对于软模式,较大的长高率区域无法触及,这导致速度差异。共线行业的速度差异来自零键的减法,从而确保取消与软扇区的速度差异。为了治疗速度差异,我们始终为所有模式构建速度调节剂。通过为不同的共线方向分配独立的速度量表,它们被概括了。当天生的分线方向不是背对背时,软调节器将包含正确的定向依赖性,这在$ n $ jet运算符中进行了讨论。作为一种应用,我们考虑了背对背的共线电流和软性电流电流的Sudakov外形,其中开发了软夸克的软速度调节器。我们将分析扩展到增强的夸克部门,并通过重夸克质量的存在来利用美味佳肴。我们介绍了各种流动和重夸克的各种对数的重新点对数的重新介绍,并采用了重新归一化组的进化和速度尺度。

In soft-collinear effective theory, we analyze the structure of rapidity divergence due to the collinear and soft modes residing in disparate phase spaces. The idea of an effective theory is applied to a system of collinear modes with large rapidity and soft modes with small rapidity. The large-rapidity (collinear) modes are integrated out to obtain the effective theory for the small-rapidity (soft) modes. The full SCET with the collinear and soft modes should be matched onto the soft theory at the rapidity boundary, and the matching procedure becomes exactly the zero-bin subtraction. The large-rapidity region is out of reach for the soft mode, which results in the rapidity divergence. The rapidity divergence in the collinear sector comes from the zero-bin subtraction, which ensures the cancellation of the rapidity divergences from the soft and collinear sectors. In order to treat the rapidity divergence, we construct the rapidity regulators consistently for all the modes. They are generalized by assigning independent rapidity scales for different collinear directions. The soft regulator incorporates the correct directional dependence when the innate collinear directions are not back-to-back, which is discussed in the $N$-jet operator. As an application, we consider the Sudakov form factor for the back-to-back collinear current and the soft-collinear current, where the soft rapidity regulator for a soft quark is developed. We extend the analysis to the boosted heavy quark sector and exploit the delicacy with the presence of the heavy quark mass. We present the resummed results of large logarithms in the form factors for various currents with the light and the heavy quarks, employing the renormalization group evolution on the renormalization and the rapidity scales.

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