论文标题
QED辐射校正对中微子散射在加速器能量的理论的理论
Theory of QED radiative corrections to neutrino scattering at accelerator energies
论文作者
论文摘要
控制量子电动力学(QED)辐射校正对于精确确定中微子振荡概率(抗)中微子检测率至关重要。理解在带电的相互作用中(反)中微子不同口味的这种校正之间的任何差异尤其重要。我们为计算这些校正提供了理论基础。使用有效的现场理论,校正被证明将其分解为软,共线和硬函数。软和共线函数在扰动理论中包含较大的对数,但可以根据QED进行计算。硬函数参数为HADRONIC结构,但没有大对数。使用一个简单的模型来进行硬函数,我们研究了QED校正在GEV能量处带电的(抗)中微子核子弹性横截面和横截面比的数值影响。我们考虑了质量奇异定理的含义,该定理控制着足够包容性可观察到的横截面的Lepton-Mas依赖性,并证明了在现象学上相关的可观察物中取消了领先的HADRONIC和核校正。
Control over quantum electrodynamics (QED) radiative corrections is critical for precise determination of neutrino oscillation probabilities from observed (anti)neutrino detection rates. It is particularly important to understand any difference between such corrections for different flavors of (anti)neutrinos in charged-current interactions. We provide theoretical foundations for calculating these corrections. Using effective field theory, the corrections are shown to factorize into soft, collinear, and hard functions. The soft and collinear functions contain large logarithms in perturbation theory but are computable from QED. The hard function parametrizes hadronic structure but is free from large logarithms. Using a simple model for the hard function, we investigate the numerical impact of QED corrections in charged-current (anti)neutrino-nucleon elastic cross sections and cross-section ratios at GeV energies. We consider the implications of mass singularity theorems that govern the lepton-mass dependence of cross sections for sufficiently inclusive observables and demonstrate the cancellation of leading hadronic and nuclear corrections in phenomenologically relevant observables.