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Strongly correlated quantum systems give rise to many exotic physical phenomena, including high-temperature superconductivity.
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2008
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2011
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2017
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2017
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2018
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I. D. Kivlichan, J. McClean, N. Wiebe, C. Gidney, A. Aspuru-Guzik, G. K.-L. Chan, and R. Babbush, “Quantum Simulation of Electronic Structure with Linear Depth and Connectivity,” Physical Review Letters 120
2018
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2018
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P. Klimov, J. Kelly, Z. Chen, M. Neeley, A. Megrant, B. Burkett, R. Barends, K. Arya, B. Chiaro, Y. Chen, A. Dunsworth, A. Fowler, B. Foxen, C. Gidney, M. Giustina, R. Graff, T. Huang, E. Jeffrey, E. Lucero, J. Mutus, O. Naaman, C. Neill, C. Quintana, P. Roushan, D. Sank, A. Vainsencher, J. Wenner, T. White, S. Boixo, R. Babbush, V. Smelyanskiy, H. Neven, and J. Martinis, “Fluctuations of Energy-Relaxation Times in Superconducting Qubits,” Physical Review Letters 121
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2018
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2018
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2019
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2019
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2019
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A. M. Childs and Y. Su, “Nearly Optimal Lattice Simulation by Product Formulas,” Physical Review Letters 123
2019
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2019
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2019
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2020
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S. McArdle, S. Endo, A. Aspuru-Guzik, S. C. Benjamin, and X. Yuan, “Quantum computational chemistry,” Reviews of Modern Physics 92
2020
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Google AI Quantum and Collaborators, “Hartree-Fock on a superconducting qubit quantum computer,” Science 369
2020
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J. McClean, N. Rubin, K. Sung, I. D. Kivlichan, X. Bonet-Monroig, Y. Cao, C. Dai, E. S. Fried, C. Gidney, B. Gimby, P. Gokhale, T. Haner, T. Hardikar, V. Havlíček, O. Higgott, C. Huang, J. Izaac, Z. Jiang, X. Liu, S. McArdle, M. Neeley, T. O’Brien, B. O’Gorman, I. Ozfidan, M. D. Radin, J. Romero, N. P. D. Sawaya, B. Senjean, K. Setia, S. Sim, D. S. Steiger, M. Steudtner, Q. Sun, W. Sun, D. Wang, F. Zhang, and R. Babbush, “OpenFermion: The electronic structure package for quantum computers,” Quantum Science and Technology (2020)
2020
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