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Factorization, the Glasma and the Ridge in heavy ion collisions

机译:在重离子碰撞中的分解,格拉斯玛和脊

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High energy heavy ion collisions can be efficiently described as the collision of two sheets of Color Glass Condensate. The dynamics of the collision can be studied ab initio in a systematic effective field theory approach. This requires factorization theorems that separate the initial state evolution of the wave functions with energy from the final state interactions that produce matter with high energy densities called the Glasma. We discuss how this matter is formed, its remarkable properties and its relevance for understanding thermalization of the Quark Gluon Plasma in heavy ion collisions.Long range rapidity correlations in the collision that have a remarkable ridge like structure may allow us to probe early times in the collision and infer directly the properties of the Glasma.
机译:高能量重离子碰撞可以有效地描述为两片彩色玻璃冷凝物的碰撞。可以在系统有效的场理论方法中研究碰撞的动态。这需要分解定理,从最终状态相互作用与称为格拉斯玛的高能量密度的最终状态相互作用分离波浪功能的初始状态演变。我们讨论如何形成这一问题,其卓越的性质及其对理解夸克玻璃等离子体热化在重离子碰撞中的热化的相关性。在具有显着脊状结构的碰撞中的碰撞中的速度相关性可以允许我们在早期探测碰撞并直接直接推断格拉斯玛的性质。

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