State-averaged wormhole corrections make the Gram matrix of time-shifted thermofield double microstates low-rank, giving a finite black hole Hilbert space of dimension e^{S_BH} and a type I von Neumann algebra.
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Non-Locality induces Isometry and Factorisation in Holography
State-averaged wormhole corrections make the Gram matrix of time-shifted thermofield double microstates low-rank, giving a finite black hole Hilbert space of dimension e^{S_BH} and a type I von Neumann algebra.