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arxiv: 1712.02803 · v1 · pith:ZMDZTJGOnew · submitted 2017-12-07 · ✦ hep-th · gr-qc· quant-ph

Bulk Entanglement Gravity without a Boundary: Towards Finding Einstein's Equation in Hilbert Space

classification ✦ hep-th gr-qcquant-ph
keywords entanglementgeometryquantumhilbertspacespacetimebulkeinstein
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We consider the emergence from quantum entanglement of spacetime geometry in a bulk region. For certain classes of quantum states in an appropriately factorized Hilbert space, a spatial geometry can be defined by associating areas along codimension-one surfaces with the entanglement entropy between either side. We show how Radon transforms can be used to convert this data into a spatial metric. Under a particular set of assumptions, the time evolution of such a state traces out a four-dimensional spacetime geometry, and we argue using a modified version of Jacobson's "entanglement equilibrium" that the geometry should obey Einstein's equation in the weak-field limit. We also discuss how entanglement equilibrium is related to a generalization of the Ryu-Takayanagi formula in more general settings, and how quantum error correction can help specify the emergence map between the full quantum-gravity Hilbert space and the semiclassical limit of quantum fields propagating on a classical spacetime.

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