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Geometric scaling in ultrahigh energy neutrinos and nonlinear perturbative QCD

机译:超高能中微子的几何定标和非线性扰动QCD

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摘要

The ultrahigh energy neutrino cross section is a crucial ingredient in the calculation of the event rate in high energy neutrino telescopes. Currently there are several approaches which predict different behaviors for its magnitude for ultrahigh energies. In this contribution is presented a summary of current predictions based on the non-linear QCD evolution equations, the so-called perturbative saturation physics. In particular, predictions are shown based on the parton saturation approaches and the consequences of geometric scaling property at high energies are discussed. The scaling property allows an analytical computation of the neutrino scattering on nucleonucleus at high energies, providing a theoretical parameterization.
机译:超高能中微子截面是高能中微子望远镜事件率计算中的关键要素。当前,有几种方法可以预测其超高能量的行为。在这一贡献中,给出了基于非线性QCD演化方程(即所谓的摄动饱和物理学)的当前预测的摘要。特别是,基于parton饱和方法显示了预测,并讨论了高能几何定标特性的后果。缩放特性允许在高能量下对核子/核上的中微子散射进行解析计算,从而提供了理论上的参数化。

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