Entanglement entropy in topological tensor networks
Vijay Balasubramanian, Charlie Cummings
Abstract
We derive an entropy formula for recently proposed tensor network models which prepare diffeomorphism invariant states of topological quantum field theories with non-compact and/or continuous gauge groups. We show that our entropy formula generalizes the notion of ``topological entanglement entropy'' to incorporate the infinite number of particle-like excitations in such theories. When our networks are endowed with gauge group SL(2,R), we can interpret them as models of three-dimensional gravity with small Newton's constant and possibly non-invertible metrics.
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