Publication | Open Access
Einstein Equations from Varying Complexity
134
Citations
27
References
2018
Year
General RelativityQuantum Gravity StatePhysicsRecent ProposalGeometric Partial Differential EquationQuantum Field TheoryEinstein EquationsQuantum Field Theory In Curved SpacetimeQuantum CosmologyGravitation TheoryConformal Field TheoryTensor Network Renormalization
A recent proposal equates the circuit complexity of a quantum gravity state with the gravitational action of a certain patch of spacetime. Since Einstein's equations follow from varying the action, it should be possible to derive them by varying complexity. I present such a derivation for vacuum solutions of pure Einstein gravity in three-dimensional asymptotically anti-de Sitter space. The argument relies on known facts about holography and on properties of tensor network renormalization, an algorithm for coarse-graining (and optimizing) tensor networks.
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