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The idea of self-testing is to render guarantees concerning the inner workings of a device based on the measurement statistics.
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Y. Z. Law, J.-D. Bancal, V. Scarani, et al. , Quantum randomness extraction for various levels of characterization of the devices, Journal of Physics A: Mathematical and Theoretical 47
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2018
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S. Breiner, A. Kalev, and C. A. Miller, Parallel self-testing of the ghz state with a proof by diagrams, EPTCS 287, 2019, pp. 43-66 10.4204/EPTCS.287.3 (2018)
2018
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A. Tavakoli, J. m. k. Kaniewski, T. Vértesi, D. Rosset, and N. Brunner, Self-testing quantum states and measurements in the prepare-and-measure scenario, Phys. Rev. A 98
2018
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S. Goswami, B. Bhattacharya, D. Das, S. Sasmal, C. Jebaratnam, and A. Majumdar, One-sided device-independent self-testing of any pure two-qubit entangled state, Physical Review A 98
2018
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2018
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2019
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2019
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J. Eisert, D. Hangleiter, N. Walk, I. Roth, D. Markham, R. Parekh, U. Chabaud, and E. Kashefi, Quantum certification and benchmarking, Nature Reviews Physics , 1 (2020)
2020
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R. Uola, A. C. S. Costa, H. C. Nguyen, and O. Gühne, Quantum steering, Rev. Mod. Phys. 92
2020
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Z. Bian, A. S. Majumdar, C. Jebarathinam, K. Wang, L. Xiao, X. Zhan, Y. Zhang, and P. Xue, Experimental demonstration of one-sided device-independent self-testing of any pure two-qubit entangled state, Phys. Rev. A 101
2020
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M. Malik, V. Srivastav, N. H. Valencia, W. McCutcheon, S. Designolle, R. K. Uola, and N. Brunner, Genuine high-dimensional quantum steering, in Optical and Quantum Sensing and Precision Metrology , Vol. 11700 (International Society for Optics and Photonics, 2021) p. 117001H
2021
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