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We show that low-depth random quantum circuits can be efficiently simulated by a quantum teleportation-inspired algorithm.
Teleporting an unknown quantum state via dual classical and einstein-podolsky-rosen channels
Bennett, C. H. et al · 1993
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A one-way quantum computer
Raussendorf, R. & Briegel, H. J · 2001
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Pseudo-random unitary operators for quantum information processing
Emerson, J., Weinstein, Y. S., Saraceno, M., Lloyd, S. & Cory, D. G · 2003
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Simulated quantum computation of molecular energies
Aspuru-Guzik, A., Dutoi, A. D., Love, P. J. & Head-Gordon, M · 2005
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Simulating quantum computation by contracting tensor networks
Markov, I. L. & Shi, Y · 2008
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Parameters of pseudorandom quantum circuits
Weinstein, Y. S., Brown, W. G. & Viola, L · 2008
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Quantum algorithm for linear systems of equations
Harrow, A. W., Hassidim, A. & Lloyd, S · 2009
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Quantum Computation and Quantum Information: 10th Anniversary Edition (Cambridge University Press, New York, NY, USA, 2011), 10th edn
Nielsen, M. A. & Chuang, I. L · 2011
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The computational complexity of linear optics
Aaronson, S. & Arkhipov, A · 2011
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Superconducting quantum circuits at the surface code threshold for fault tolerance
Barends, R. et al · 2014
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High-fidelity quantum logic gates using trapped-ion hyperfine qubits
Ballance, C. J., Harty, T. P., Linke, N. M., Sepiol, M. A. & Lucas, D. M · 2016
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High-fidelity universal gate set for Be + 9 {{}^{9}\mathrm{Be}}^{+} ion qubits
Gaebler, J. P. et al · 2016
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Complexity-theoretic foundations of quantum supremacy experiments
Aaronson, S. & Chen, L · 2016
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The sunway taihulight supercomputer: system and applications
Fu, H. et al · 2016
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Quantum computational supremacy
Harrow, A. W. & Montanaro, A · 2017
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Breaking the 49-qubit barrier in the simulation of quantum circuits
Characterizing quantum supremacy in near-term devices
Boixo, S. et al · 2018
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A blueprint for demonstrating quantum supremacy with superconducting qubits
Neill, C. et al · 2018
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How many qubits are needed for quantum computational supremacy?
Dalzell, A. M., Harrow, A. W., Koh, D. E. & La Placa, R. L · 2018
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Quantum supremacy lower bounds by entanglement scaling
Biamonte, J. D., Morales, M. E. & Koh, D. E · 2018
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64-qubit quantum circuit simulation
Chen, Z.-Y. et al · 2018
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Pednault, E. et al · 2017
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Simulation of low-depth quantum circuits as complex undirected graphical models
Boixo, S., Isakov, S. V., Smelyanskiy, V. N. & Neven, H · 2017
Cited alongside, same era.
Classical boson sampling algorithms with superior performance to near-term experiments
Neville, A. et al · 2017
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On the complexity and verification of quantum random circuit sampling
Bouland, A., Fefferman, B., Nirkhe, C. & Vazirani, U · 2018
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Quantum computing in the nisq era and beyond
Preskill, J · 2018
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Li, R., Wu, B., Ying, M., Sun, X. & Yang, G · 2018
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Classical simulation of intermediate-size quantum circuits
Chen, J., Zhang, F., Huang, C., Newman, M. & Shi, Y · 2018
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Quantum supremacy is both closer and farther than it appears
Markov, I. L., Fatima, A., Isakov, S. V. & Boixo, S · 2018
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Villalonga, B. et al · 2018
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Massively parallel quantum computer simulator, eleven years later
De Raedt, H. et al · 2018
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