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As we approach the era of quantum advantage, when quantum computers (QCs) can outperform any classical computer on particular tasks, there remains the difficult challenge of how to validate their performance.
A leisurely look at the bootstrap, the jackknife, and cross-validation
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Shor, P. W · 1994
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Buhrman, H., Cleve, R., Watrous, J. & De Wolf, R · 2001
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Kimble, H. J · 2008
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Cross, A · 2018
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Nam, Y., Ross, N. J., Su, Y., Childs, A. M. & Maslov, D · 2018
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Liang, Y.-C. et al · 2019
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Aaronson, S · 2019
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Generation of thermofield double states and critical ground states with a quantum computer
Zhu, D. et al · 2020
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Generalized hamiltonian to describe imperfections in ion-light interaction
Li, M. et al · 2020
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Demonstration of the qccd trapped-ion quantum computer architecture
Pino, J. M. et al · 2020
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Frequency ratio measurements at 18-digit accuracy using an optical clock network
Beloy, K. et al · 2021
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Theoretical and experimental perspectives of quantum verification
Carrasco, J., Elben, A., Kokail, C., Kraus, B. & Zoller, P · 2021
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Ibm quantum. https://quantum-computing.ibm.com/, 2021
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Cross, A. W., Bishop, L. S., Sheldon, S., Nation, P. D. & Gambetta, J. M · 2019
Cited alongside, same era.
Cross-platform verification of intermediate scale quantum devices
Elben, A. et al · 2020
Cited alongside, same era.
Predicting many properties of a quantum system from very few measurements
Huang, H.-Y., Kueng, R. & Preskill, J · 2020
Cited alongside, same era.
Fault-tolerant operation of a quantum error-correction code
Egan, L. et al · 2020
Cited alongside, same era.
Quantum algorithm zoo
Jordan, S
Cited in the paper.
2021
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Demonstration of quantum volume 64 on a superconducting quantum computing system
Jurcevic, P. et al · 2021
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Provably efficient machine learning for quantum many-body problems
Huang, H.-Y., Kueng, R., Torlai, G., Albert, V. V. & Preskill, J · 2021
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Importance sampling of randomized measurements for probing entanglement
Rath, A., van Bijnen, R., Elben, A., Zoller, P. & Vermersch, B · 2021
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