论文标题
全息量子混乱的晚期物理学
Late time physics of holographic quantum chaos
论文作者
论文摘要
量子混沌系统通常是通过断言它们的光谱统计数据与随机矩阵理论相吻合或很好地近似的。在本文中,我们解释了随机矩阵理论的普遍内容是如何出现的,这是一个简单的对称性原理及其相关的金石模式的结果。这使我们能够写下量子混沌系统的有效场理论(EFT)描述,该描述能够控制级别统计信息至准确性$ {\ cal o} \ left(e^{ - s} \ right)$,并用熵$ s $。我们使用具有任意不变潜力的矩阵模型的示例,以及它如何应用于单个量子系统,而无需参考集合,我们将如何从显式合奏中出现EFT描述。在ADS/CFT中,这给出了一个一般框架,以表达“不同的宇宙”之间的相关性,我们明确地证明了在最小的弦理论中EFT的批量实现,其中金石模式是伸展体光谱之间伸展的字符串状态的状态。我们讨论了量子混乱的EFT在更高维场理论中的构建,例如适用于高维广告/CFT双对。
Quantum chaotic systems are often defined via the assertion that their spectral statistics coincides with, or is well approximated by, random matrix theory. In this paper we explain how the universal content of random matrix theory emerges as the consequence of a simple symmetry-breaking principle and its associated Goldstone modes. This allows us to write down an effective-field theory (EFT) description of quantum chaotic systems, which is able to control the level statistics up to an accuracy ${\cal O} \left(e^{-S} \right)$ with $S$ the entropy. We explain how the EFT description emerges from explicit ensembles, using the example of a matrix model with arbitrary invariant potential, but also when and how it applies to individual quantum systems, without reference to an ensemble. Within AdS/CFT this gives a general framework to express correlations between "different universes" and we explicitly demonstrate the bulk realization of the EFT in minimal string theory where the Goldstone modes are bound states of strings stretching between bulk spectral branes. We discuss the construction of the EFT of quantum chaos also in higher dimensional field theories, as applicable for example for higher-dimensional AdS/CFT dual pairs.