Evolution of complexity following a quantum quench in free field theory
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Publication:1671826
DOI10.1007/JHEP06(2018)029zbMath1395.81149arXiv1804.00107OpenAlexW3098967994WikidataQ129717255 ScholiaQ129717255MaRDI QIDQ1671826
Daniel W. F. Alves, Giancarlo Camilo
Publication date: 7 September 2018
Published in: Journal of High Energy Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1804.00107
Related Items (24)
Post-quench evolution of complexity and entanglement in a topological system ⋮ Circuit complexity for coherent states ⋮ Circuit complexity in interacting QFTs and RG flows ⋮ Holographic complexity in Vaidya spacetimes. I. ⋮ Holographic complexity in Vaidya spacetimes. II. ⋮ Holographic subregion complexity under a thermal quench ⋮ Evolution of circuit complexity in a harmonic chain under multiple quenches ⋮ Complexity of operators generated by quantum mechanical Hamiltonians ⋮ Time evolution of complexity: a critique of three methods ⋮ Holographic spacetimes as quantum circuits of path-integrations ⋮ Entanglement after quantum quenches in Lifshitz scalar theories ⋮ Holographic complexity under a global quantum quench ⋮ Binding complexity and multiparty entanglement ⋮ On quantum quenches at one loop ⋮ Subsystem complexity after a local quantum quench ⋮ Complexity measures in QFT and constrained geometric actions ⋮ Quantum quench in non-relativistic fermionic field theory: harmonic traps and 2D string theory ⋮ On volume subregion complexity in Vaidya spacetime ⋮ Subsystem complexity after a global quantum quench ⋮ Holographic complexity for defects distinguishes action from volume ⋮ Complexity and scaling in quantum quench in 1 + 1 dimensional fermionic field theories ⋮ Circuit complexity of knot states in Chern-Simons theory ⋮ Holographic and QFT complexity with angular momentum ⋮ Aspects of the first law of complexity
Cites Work
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- Complexity of formation in holography
- Chaos and complexity by design
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- Circuit complexity in quantum field theory
- Holographic complexity is nonlocal
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- Evolution of complexity following a global quench
- Holographic complexity and noncommutative gauge theory
- Universality in fast quantum quenches
- Holographic geometry of entanglement renormalization in quantum field theories
- Holographic complexity of Einstein-Maxwell-Dilaton gravity
- Complexity growth with Lifshitz scaling and hyperscaling violation
- Entanglement is not enough
- Quantum Computation as Geometry
- Holographic Derivation of Entanglement Entropy from the anti–de Sitter Space/Conformal Field Theory Correspondence
- Computational Complexity
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