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Boundary conditions in the QCD nucleus-nucleus scattering problem

机译:QCD核-核散射问题中的边界条件

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摘要

In the framework of the effective field theory for interacting BFKL pomerons, applied to nucleus-nucleus scattering, boundary conditions for the classical field equations are discussed. Correspondence with the QCD diagrams at the boundary rapidities requires pomeron interaction with the participating nuclei to be exponential and non-local. Commonly used 'eikonal' boundary conditions, local and linear in fields, follow in the limit of small QCD pomeron-nucleon coupling. Numerical solution of the classical field equations, which sum all tree diagrams for central gold-gold scattering, demonstrates that corrected boundary conditions lead to substantially different results, as compared to the eikonal conditions studied in earlier publications. A breakdown of projectile-target symmetry for particular solutions discovered earlier in [S. Bondarenko, L. Motyka, Phys. Rev. D 75 (2007) 114015] is found to occur at roughly twice lower rapidity. Most important, due to a high non-linearity of the problem, the found asymmetric solutions are not unique but form a family growing in number with rapidity. The minimal value for the action turns out to be much lower than with the eikonal boundary conditions and saturates at rapidities around 10. (c) 2007 Elsevier B.V. All rights reserved.
机译:在有效场论相互作用BFKL pomeron的框架下,应用于核-核散射,讨论了经典场方程的边界条件。与QCD图在边界速度上的对应关系要求波美隆与参与原子核的相互作用是指数的且非局部的。普遍使用的“本征”边界条件(在场中局部和线性)遵循小的QCD波美隆-核子耦合的极限。经典场方程的数值解决方案总结了中心金金散射的所有树图,表明与早先出版物中研究的常规条件相比,校正的边界条件导致的结果大不相同。对于特定解决方案的弹丸-目标对称性的细分,早在[S.邦达连科,莫蒂卡,物理学。 Rev. D 75(2007)114015]被发现以大约低两倍的速度发生。最重要的是,由于问题的高度非线性,发现的不对称解不是唯一的,而是形成数量迅速增长的族。事实证明,该动作的最小值远低于正常边界条件,并且以约10的速度饱和。(c)2007 Elsevier B.V.保留所有权利。

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