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Near-term applications of quantum information processors will rely on optimized circuit implementations to minimize gate depth and therefore mitigate the impact of gate errors in noisy intermediate-scale quantum (NISQ) computers.
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2007
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A. O. Niskanen, K. Harrabi, F. Yoshihara, Y. Nakamura, S. Lloyd, and J. S. Tsai, “Quantum coherent tunable coupling of superconducting qubits.” Science (New York, N.Y.) 316
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2010
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2012
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2018
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Zhihui Wang, Stuart Hadfield, Zhang Jiang, and Eleanor G. Rieffel, “Quantum approximate optimization algorithm for maxcut: A fermionic view,” Phys. Rev. A 97
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IBM Q, “Quantum devices & simulators,” https://www.research.ibm.com/ibm-q/technology/devices/##ibmqx4 (2018), [Online; accessed 2-Oct-2019]
2019
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2019
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Stuart Hadfield, Zhihui Wang, Bryan O’Gorman, Eleanor G. Rieffel, Davide Venturelli, and Rupak Biswas, “From the quantum approximate optimization algorithm to a quantum alternating operator ansatz,” Algorithms 12
2019
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Deanna Abrams, Nicolas Didier, Blake Johnson, Marcus da Silva, and Colm Ryan, “Ancillary Files for Paper: Implementation of the XY interaction family with calibration of a single pulse,” (2019)
2019
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