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| 1 | +% Generated by IEEEtran.bst, version: 1.14 (2015/08/26) |
| 2 | +\begin{thebibliography}{10} |
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| 20 | +#2}} |
| 21 | +\providecommand{\BIBdecl}{\relax} |
| 22 | +\BIBdecl |
| 23 | + |
| 24 | +\bibitem{preskill2018quantum} |
| 25 | +J.~Preskill, ``Quantum computing in the nisq era and beyond,'' \emph{Quantum}, |
| 26 | + vol.~2, p.~79, 2018. |
| 27 | + |
| 28 | +\bibitem{farhi2014quantumapproximateoptimizationalgorithm} |
| 29 | +\BIBentryALTinterwordspacing |
| 30 | +E.~Farhi, J.~Goldstone, and S.~Gutmann, ``A quantum approximate optimization |
| 31 | + algorithm,'' 2014. [Online]. Available: \url{https://arxiv.org/abs/1411.4028} |
| 32 | +\BIBentrySTDinterwordspacing |
| 33 | + |
| 34 | +\bibitem{balasubramanian_nanoscale_2008} |
| 35 | +\BIBentryALTinterwordspacing |
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| 40 | +\BIBentrySTDinterwordspacing |
| 41 | + |
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| 46 | + |
| 47 | +\bibitem{wu2019programmable} |
| 48 | +Y.~Wu, Y.~Wang, X.~Qin, X.~Rong, and J.~Du, ``A programmable two-qubit |
| 49 | + solid-state quantum processor under ambient conditions,'' \emph{npj Quantum |
| 50 | + Information}, vol.~5, no.~1, p.~9, 2019. |
| 51 | + |
| 52 | +\bibitem{Childress_Hanson_2013} |
| 53 | +L.~Childress and R.~Hanson, ``Diamond nv centers for quantum computing and |
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| 60 | + |
| 61 | +\bibitem{hadfield2019quantum} |
| 62 | +S.~Hadfield, Z.~Wang, B.~O’gorman, E.~G. Rieffel, D.~Venturelli, and |
| 63 | + R.~Biswas, ``From the quantum approximate optimization algorithm to a quantum |
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| 66 | + |
| 67 | +\bibitem{pagano2020quantum} |
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| 70 | + National Academy of Sciences}, vol. 117, no.~41, pp. 25\,396--25\,401, 2020. |
| 71 | + |
| 72 | +\bibitem{he2024direct} |
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| 76 | + |
| 77 | +\bibitem{cooper2016coherent} |
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| 81 | + |
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| 86 | + |
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| 90 | + |
| 91 | +\bibitem{qmach_opx} |
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| 99 | + |
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| 104 | + |
| 105 | +\bibitem{Mitarai_2021} |
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| 109 | + |
| 110 | +\end{thebibliography} |
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