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We propose a connection between the butterfly velocity and the complexity growth rate in the context of thermodynamics of black holes where the cosmological constant is interpreted as thermodynamic pressure.
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M. Alishahiha, “Holographic Complexity,” Phys. Rev. D 92
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D. A. Roberts, D. Stanford and L. Susskind, “Localized shocks,” JHEP 1503
2015
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2015
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2015
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2015
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L. Susskind, “Computational Complexity and Black Hole Horizons,” [Fortsch. Phys. 64
M. M. Qaemmaqami, ”Butterfly Effect in 3D Gravity,” Phys. Rev. D 96
2017
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2017
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2017
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M. Mezei, “On entanglement spreading from holography,” JHEP 1705
2017
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2016
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2016
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2016
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2016
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2016
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2016
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2017
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A. R. Brown, L. Susskind and Y. Zhao, “Quantum Complexity and Negative Curvature,” Phys. Rev. D 95
2017
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2017
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A. R. Brown and L. Susskind, “Second law of quantum complexity,” Phys. Rev. D 97
2018
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2018
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M. M. Qaemmaqami, “Complexity growth in minimal massive 3D gravity,” Phys. Rev. D 97
2018
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M. Moosa, “Evolution of Complexity Following a Global Quench,” JHEP 1803
2018
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2018
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V. Jahnke, “Delocalizing entanglement of anisotropic black branes,” JHEP 1801
2018
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2018
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