论文标题
夸克 - 哈德隆过渡和纠缠
Quark-Hadron Transition and Entanglement
论文作者
论文摘要
双重全息描述在解释相对论重离子碰撞的早期阶段的基本属性中取得了许多成功,直到形成最小的粘性夸克 - 格鲁恩流体。但是,很少有尝试将其应用程序扩展到此阶段。在这里,我们探索了超出强丽时期的这种扩展的前景。我们的讨论利用了对域理论态在反DE保姆空间边缘的纠缠特性的二元性的最新见解和散装中的非平凡拓扑的边缘,通常称为ER = EPR二元性。我们从重离子现象学的角度讨论了这个主题,回顾了几个相关的概念,并将其绘制为将它们结合到相对论重离子碰撞的全面,至少半定量描述中的途径。我们在这个方向上概述了可能的下一步。
The dual holographic description has enjoyed many successes in explaining fundamental properties of the early stages of relativistic heavy ion collisions up to the formation of a minimal-viscosity quark-gluon fluid. However, there have been few attempts to extend its application beyond this stage. Here we explore the prospects for such an extension beyond the time of hadronization. Our discussion makes use of recent insights into the duality of entanglement properties of field theory states in the edge of Anti-de Sitter space and non-trivial topologies of horizons in the bulk, often referred to as ER = EPR duality. We discuss this topic from the point of view of heavy-ion phenomenology, review several relevant concepts, and map out a path toward combining them into a comprehensive, at least semiquantitative description of relativistic heavy ion collisions. We outline possible next steps in this direction.