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A Langevin equation for high-energy evolution with pomeron loops

机译:具有波美隆环的高能演化的Langevin方程

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摘要

We show that the Balitsky-JIMWLK equations proposed to describe non-linear evolution in QCD at high energy fail to include the effects of fluctuations in the gluon number, and thus to correctly describe both the low-density regime and the approach towards saturation. On the other hand, these fluctuations are correctly encoded (in the limit where the number of colors is large) in Mueller's color dipole picture, which, however, neglects saturation. By combining the dipole picture at low density with the JIMWLK evolution at high density, we construct a generalization of the Balitsky hierarchy which includes the particle number fluctuations, and thus the pomeron loops. After an additional coarse-graining in impact parameter space, this hierarchy is shown to reduce to a Langevin equation in the universality class of the stochastic Fisher-Kolmogorov-Petrovsky-Piscounov (sFKPP) equation. This equation implies that the non-linear effects in the evolution become important already in the high-momentum regime where the average density is small, which signals the breakdown of the BFKL approximation. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们表明,提出的描述高能量QCD中非线性演化的Balitsky-JIMWLK方程未能包含胶子数波动的影响,从而不能正确描述低密度体系和饱和途径。另一方面,这些波动在Mueller的彩色偶极子图像中被正确编码(在颜色数量很大的极限内),但忽略了饱和度。通过将低密度的偶极子图像与高密度的JIMWLK演化相结合,我们构造了Balitsky层次结构的概化,该层次结构包括粒子数波动以及波默龙环。在冲击参数空间中进行了额外的粗粒度处理后,该层次结构显示为简化为随机Fisher-Kolmogorov-Petrovsky-Piscounov(sFKPP)方程的通用性类中的Langevin方程。该方程式表明,在平均密度较小的高动量态中,演化中的非线性效应已经变得很重要,这预示着BFKL近似的分解。 (c)2005 Elsevier B.V.保留所有权利。

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