Abstract
We discuss the time dependence of subsystem entropies in interacting quantum systems. As a model for the time dependence, we suggest that the entropy is as large as possible given two constraints: one follows from the existence of an emergent light cone, and the other is a conjecture associated to the “entanglement velocity” vE. We compare this model to new holographic and spin chain computations, and to an operator growth picture. Finally, we introduce a second way of computing the emergent light cone speed in holographic theories that provides a boundary dynamics explanation for a special case of entanglement wedge subregion duality in AdS/CFT.
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CITATION STYLE
Mezei, M., & Stanford, D. (2017). On entanglement spreading in chaotic systems. Journal of High Energy Physics, 2017(5). https://doi.org/10.1007/JHEP05(2017)065
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