Complexity Equals Anything II
arXiv:2210.09647 · doi:10.1007/JHEP01(2023)154
Abstract
We expand on our results in arXiv:2111.02429 to present a broad new class of gravitational observables in asymptotically Anti-de Sitter space living on general codimension-zero regions of the bulk spacetime. By taking distinct limits, these observables can reduce to well-studied holographic complexity proposals, e.g., the volume of the maximal slice and the action or spacetime volume of the Wheeler-DeWitt patch. As with the codimension-one family found in arXiv:2111.02429, these new observables display two key universal features for the thermofield double state: they grow linearly in time at late times and reproduce the switchback effect. Hence we argue that any member of this new class of observables is an equally viable candidate as a gravitational dual of complexity. Moreover, using the Peierls construction, we show that variations of the codimension-zero and codimension-one observables are encoded in the gravitational symplectic form on the semi-classical phase-space, which can then be mapped to the CFT.
53 pages + 6 appendices
References in corpus (10)
- Complexity and Shock Wave Geometries
- Holography from Conformal Field Theory
- Gravitational action with null boundaries
- Deriving covariant holographic entanglement
- Quantum Extremal Islands Made Easy, PartIII: Complexity on the Brane
- Holographic Complexity Equals Which Action?
- Entanglement equilibrium for higher order gravity
- Charged Renyi entropies and holographic superconductors
- Unambiguous Phase Spaces for Subregions
- The Holographic Dual of the Entanglement Wedge Symplectic Form
Cited by in corpus (38)
- Generalized entropy for general subregions in quantum gravity
- Krylov Complexity in Free and Interacting Scalar Field Theories with Bounded Power Spectrum
- Spread and Spectral Complexity in Quantum Spin Chains: from Integrability to Chaos
- Quantum complexity in gravity, quantum field theory, and quantum information science
- Complexity=Anything: Singularity Probes
- The Cosmological Switchback Effect
- Black Hole Chemistry: the first 15 years
- Krylov spread complexity as holographic complexity beyond JT gravity
- Quasinormal modes, greybody factors and thermodynamics of four dimensional AdS black holes in Critical Gravity
- Island formula in Planck brane
- Kasner interiors from analytic hairy black holes
- Volume complexity of dS bubbles
- Generalized Volume-Complexity for RN-AdS Black Hole
- Krylov complexity of deformed conformal field theories
- Non-perturbative Overlaps in JT Gravity: From Spectral Form Factor to Generating Functions of Complexity
- Gibbons-Hawking-York boundary terms and the generalized geometrical trinity of gravity
- Complexity = Anything Can Grow Forever in de Sitter
- Complexity and Multi-boundary Wormholes
- Holographic complexity: braneworld gravity versus the Lloyd bound
- The Cosmological Switchback Effect II
- Complexity, scaling, and a phase transition
- Toward Krylov-based holography in double-scaled SYK
- Holographic complexity of hyperbolic black holes
- Holographic Complexity and Phase Transition for AdS Black Holes
- Geometric quantum complexity of bosonic oscillator systems
- Krylov operator complexity in holographic CFTs: Smeared boundary reconstruction and the dual proper radial momentum
- Generalized holographic complexity of rotating black holes
- Universal Early-Time Growth in Quantum Circuit Complexity
- The Complexity of Being Entangled
- Random Circuits in the Black Hole Interior
- The landscape of complexity measures in 2D gravity
- Klein-Gordon and Schrödinger solutions in Lovelock quantum gravity
- Generalized volume-complexity for Lovelock black holes
- Universal Time Evolution of Holographic and Quantum Complexity
- Entanglement Entropy and Complexity in Dyonic Quantum Black Holes
- Toward a physically motivated notion of Gaussian complexity geometry
- Complexity of Magnetization and Magnetic Simplification
- Holographic complexity of the Klebanov-Strassler background