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The gluon condensation at high energy hadron collisions

机译:高能强子碰撞时的胶凝结

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摘要

We report that the saturation/CGC model of gluon distribution is unstable under action of the chaotic solution in a nonlinear QCD evolution equation, and it evolves to the distribution with a sharp peak at the critical momentum. We find that this gluon condensation is caused by a new kind of shadowing–antishadowing effects, and it leads to a series of unexpected effects in high energy hadron collisions including astrophysical events. For example, the extremely intense fluctuations in the transverse-momentum and rapidity distributions of the gluon jets present the gluon-jet bursts; a sudden increase of the proton–proton cross sections may fill the GZK suppression; the blocking QCD evolution will restrict the maximum available energy of the hadron–hadron colliders.
机译:我们报告说,胶子分布的饱和度/ CGC模型在非线性QCD演化方程的混沌解的作用下是不稳定的,并且演化为在临界动量处具有尖峰的分布。我们发现这种胶子凝结是由一种新型的阴影-反倾斜作用引起的,它导致高能强子碰撞中包括天体物理事件在内的一系列意想不到的影响。例如,胶子射流的横向动量和速度分布的剧烈波动会产生胶子射流的爆发。质子-质子截面的突然增加可能填充了GZK抑制; QCD的阻滞发展将限制强子-强子对撞机的最大可用能量。

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