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Due to the technical difficulty of building large quantum computers, it is important to be able to estimate how faithful a given implementation is to an ideal quantum computer.
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Other operations can also be certified efficiently in this manner. The fundamental requirement is that the new measurement f ( \mathaccentV h a t 05 E M j , 𝒞 i , 𝒰 ) f({\mathaccentV{hat}05E{M}}_{j},{\mathcal{C}}_{i},{\mathcal{U}}) be a measurement that is easily implemented with high fidelity
Cited in the paper.
2010
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2011
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Steven T. Flammia and Yi-Kai Liu, “Direct fidelity estimation from few pauli measurements,” Phys. Rev. Lett., 106
2011
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2011
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O. Moussa, J. Baugh, C. A. Ryan, and R. Laflamme, “Demonstration of sufficient control for two rounds of quantum error correction in a solid state ensemble quantum information processor,” Phys. Rev. Lett., 107
2011
Closest in time.