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Quantum effects can stabilize wormhole solutions in general relativity, allowing information and matter to be transported between two connected spacetimes.
Juan Maldacena and Alexey Milekhin, “SYK wormhole formation in real time,” arXiv:1912.03276
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Juan Maldacena and Douglas Stanford, “Remarks on the sachdev-ye-kitaev model,” Phys. Rev. D 94
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Juan Maldacena, Stephen H. Shenker, and Douglas Stanford, “A bound on chaos,” J. High Energy Phys. 2016
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P. Gao, D. L. Jafferis, and A. C. Wall, “Traversable wormholes via a double trace deformation,” J. High Energy Phys. 12
2017
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Juan Maldacena, Douglas Stanford, and Zhenbin Yang, “Diving into traversable wormholes,” Fortschr. Phys. 65
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Ippei Danshita, Masanori Hanada, and Masaki Tezuka, “Creating and probing the sachdev–ye–kitaev model with ultracold gases: Towards experimental studies of quantum gravity,” Prog. Theor. Exp. Phys. 2017
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Zicao Fu, Brianna Grado-White, and Donald Marolf, “Traversable asymptotically flat wormholes with short transit times,” Classical and Quantum Gravity 36
2019
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Dongsu Bak, Chanju Kim, and Sang-Heon Yi, “Experimental probes of traversable wormholes,” Journal of High Energy Physics 2019
2019
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Alexander Altland, Dmitry Bagrets, and Alex Kamenev, “Sachdev-ye-kitaev non-fermi-liquid correlations in nanoscopic quantum transport,” Phys. Rev. Lett. 123
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Antonio M. García-García, Tomoki Nosaka, Dario Rosa, and Jacobus J. M. Verbaarschot, “Quantum chaos transition in a two-site sachdev-ye-kitaev model dual to an eternal traversable wormhole,” Phys. Rev. D 100
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2018
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Dongsu Bak, Chanju Kim, and Sang-Heon Yi, “Bulk view of teleportation and traversable wormholes,” J. High Energy Phys. 2018
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Anffany Chen, R. Ilan, F. de Juan, D. I. Pikulin, and M. Franz, “Quantum holography in a graphene flake with an irregular boundary,” Phys. Rev. Lett. 121
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Marcel Franz and Moshe Rozali, “Mimicking black hole event horizons in atomic and solid-state systems,” Nat. Rev. Mater. 3
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Juan Maldacena and Xiao-Liang Qi, “Eternal traversable wormhole,” arXiv:1804.00491 (2018)
2018
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Ping Gao and Hong Liu, “Regenesis and quantum traversable wormholes,” J. High Energy Phys. 2019
2019
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For further discussion, additional data and analysis, see the supplementary material available at [online link]
Cited in the paper.
In order to observe revivals, it is crucial to extract more than just an energy gap from saddle-point equations or exact diagonalization. A single-scale expression G L L ( τ ) ∼ e − E gap τ → G L L ( t ) ∼ e − i E gap t G_{LL}(\tau)\sim e^{-E_{\mathrm{gap}}\tau}\to G_{LL}(t)\sim e^{-iE_{\mathrm{gap}}t} [ 21 , 22 ] does not predict revivals, cf. Eqs. ( 6
Cited in the paper.
2019
Later among the works it cites.
2019
Later among the works it cites.
2019
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Étienne Lantagne-Hurtubise, Stephan Plugge, Oguzhan Can, and Marcel Franz, “Diagnosing quantum chaos in many-body systems using entanglement as a resource,” Phys. Rev. Research 2
2020
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2020
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