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Universal far-from-equilibrium dynamics of a holographic superconductor

机译:全息超导体的普遍远离平衡动力学

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摘要

Symmetry-breaking phase transitions are an example of non-equilibrium processes that require real-time treatment, a major challenge in strongly coupled systems without long-lived quasiparticles. Holographic duality provides such an approach by mapping strongly coupled field theories in D dimensions into weakly coupled quantum gravity in D+1 anti-de Sitter spacetime. Here we use holographic duality to study the formation of topological defects-winding numbers-in the course of a superconducting transition in a strongly coupled theory in a 1D ring. When the system undergoes the transition on a given quench time, the condensate builds up with a delay that can be deduced using the Kibble-Zurek mechanism from the quench time and the universality class of the theory, as determined from the quasinormal mode spectrum of the dual model. Typical winding numbers deposited in the ring exhibit a universal fractional power law dependence on the quench time, also predicted by the Kibble-Zurek Mechanism.
机译:破坏对称性的相变是需要实时处理的非平衡过程的一个示例,这是在没有长寿命准粒子的强耦合系统中的主要挑战。全息对偶性通过将D维上的强耦合场理论映射到D + 1个反de Sitter时空中的弱耦合量子引力来提供这种方法。在这里,我们使用全息对偶性研究一维环中强耦合理论中超导跃迁过程中拓扑缺陷(绕组数)的形成。当系统在给定的淬火时间下经历过渡时,冷凝物会以一定的延迟积聚,可使用Kibble-Zurek机理从淬火时间和理论的通用性类推导得出,该延迟类由理论的准标准模态频谱确定双重模型。沉积在环中的典型绕组数表现出与淬灭时间有关的通用分数幂定律,这也由Kibble-Zurek机理预测。

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