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We propose a measure of quantum state complexity defined by minimizing the spread of the wave-function over all choices of basis.
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2008
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Zhao, Ying, “Collision in the interior of wormhole,” JHEP 03
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Czech, Bartłomiej, “Einstein Equations from Varying Complexity,” Phys. Rev. Lett. 120
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P. Caputa and J. M. Magan, “Quantum Computation as Gravity,” Phys. Rev. Lett. 122
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D. E. Parker, X. Cao, A. Avdoshkin, T. Scaffidi and E. Altman, “A Universal Operator Growth Hypothesis,” Phys. Rev. X 9
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J. L. F. Barbón, E. Rabinovici, R. Shir and R. Sinha, “On The Evolution Of Operator Complexity Beyond Scrambling,” JHEP 10
2019
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2021
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F. G. S. L. Brandão, W. Chemissany, N. Hunter-Jones, R. Kueng and J. Preskill, “Models of Quantum Complexity Growth,” PRX Quantum 2
2021
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Bulchandani, Vir B. and Sondhi, S. L., “How smooth is quantum complexity?,” JHEP 10
2021
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S. K. Jian, B. Swingle and Z. Y. Xian, “Complexity growth of operators in the SYK model and in JT gravity,” JHEP 03
2021
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A. Dymarsky and M. Smolkin, “Krylov complexity in conformal field theory,” PhysRevD 8
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2021
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2022
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2022
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