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Running quantum programs is fraught with challenges on on today's noisy intermediate scale quantum (NISQ) devices.
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R. Wille, O. Keszocze, M. Walter, P. Rohrs, A. Chattopadhyay, and R. Drechsler, “Look-ahead schemes for nearest neighbor optimization of 1D and 2D quantum circuits,” in 2016 21st Asia and South Pacific Design Automation Conference (ASP-DAC) . IEEE, 2016, pp. 292–297
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“IBM Quantum Experience,” https://github.com/Qiskit/qiskit-api-py, accessed: 2018-11-16
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A. Zulehner, A. Paler, and R. Wille, “An efficient methodology for mapping quantum circuits to the IBM QX architectures,” IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems , 2018
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M. Y. Siraichi, V. F. d. Santos, S. Collange, and F. M. Q. Pereira, “Qubit allocation,” in Proceedings of the 2018 International Symposium on Code Generation and Optimization . ACM, 2018, pp. 113–125
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2019
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S. S. Tannu and M. K. Qureshi, “Not all qubits are created equal: A case for variability-aware policies for NISQ-era quantum computers,” in Proceedings of the Twenty-Fourth International Conference on Architectural Support for Programming Languages and Operating Systems , 2019
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H. Abraham, AduOffei, I. Y. Akhalwaya, and et al., “Qiskit: An open-source framework for quantum computing,” 2019. [Online]. Available: qiskit.org
2019
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S. S. Tannu and M. K. Qureshi, “Ensemble of diverse mappings: Improving reliability of quantum computers by orchestrating dissimilar mistakes,” in International Symposium on Microarchitecture , 2019, pp. 253–265
2019
Cited alongside, same era.
——, “Mitigating measurement errors in quantum computers by exploiting state-dependent bias,” in International Symposium on Microarchitecture , 2019, pp. 279–290
2019
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Y. Shi, N. Leung, P. Gokhale, Z. Rossi, D. I. Schuster, H. Hoffmann, and F. T. Chong, “Optimized compilation of aggregated instructions for realistic quantum computers,” in Proceedings of the Twenty-Fourth International Conference on Architectural Support for Programming Languages and Operating Systems , ser. ASPLOS ’19. New York, NY, USA: ACM, 2019, pp. 1031–1044. [Online]. Available: http://doi.acm.org/10.1145/3297858.3304018
2019
Later among the works it cites.
P. Gokhale, Y. Ding, T. Propson, C. Winkler, N. Leung, Y. Shi, D. I. Schuster, H. Hoffmann, and F. T. Chong, “Partial compilation of variational algorithms for noisy intermediate-scale quantum machines,” in International Symposium on Microarchitecture , 2019
2019
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G. Li, Y. Ding, and Y. Xie, “Tackling the qubit mapping problem for NISQ-era quantum devices,” in Proceedings of the Twenty-Fourth International Conference on Architectural Support for Programming Languages and Operating Systems , ser. ASPLOS ’19. New York, NY, USA: ACM, 2019, pp. 1001–1014. [Online]. Available: http://doi.acm.org/10.1145/3297858.3304023
2019
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P. Murali, N. M. Linke, M. Martonosi, A. J. Abhari, N. H. Nguyen, and C. H. Alderete, “Full-stack, real-system quantum computer studies: Architectural comparisons and design insights,” in International Symposium on Computer Architecture , 2019, pp. 527–540
2019
Cited alongside, same era.
L. Bishop and J. Gambetta, “Reduction and/or mitigation of crosstalk in quantum bit gates,” 2019, US Patent App. 15/721,194
2019
Cited alongside, same era.
Later among the works it cites.
IBM, “Fair-share queuing,” 2020. [Online]. Available: https://quantum-computing.ibm.com/docs/cloud/backends/queue
2020
Closest in time.
P. Murali, D. C. Mckay, M. Martonosi, and A. Javadi-Abhari, “Software mitigation of crosstalk on noisy intermediate-scale quantum computers,” in Proceedings of the Twenty-Fifth International Conference on Architectural Support for Programming Languages and Operating Systems , ser. ASPLOS ’20. New York, NY, USA: Association for Computing Machinery, 2020, p. 1001–1016. [Online]. Available: https://doi.org/10.1145/3373376.3378477
2020
Closest in time.
J. Liu, G. T. Byrd, and H. Zhou, “Quantum circuits for dynamic runtime assertions in quantum computation,” in Proceedings of the Twenty-Fifth International Conference on Architectural Support for Programming Languages and Operating Systems , ser. ASPLOS ’20. New York, NY, USA: Association for Computing Machinery, 2020, p. 1017–1030. [Online]. Available: https://doi.org/10.1145/3373376.3378488
2020
Closest in time.