Reiher, M., Wiebe, N., Svore, K. M., Wecker, D. & Troyer, M. Elucidating reaction mechanisms on quantum computers. Proc. Natl Acad. Sci. USA 114, 7555–7560 (2016).
Beverland, M. E. et al. Assessing requirements to scale to practical quantum advantage. Preprint at https://arxiv.org/abs/2211.07629 (2022).
Aharonov, D. & Ben-Or, M. Fault-tolerant quantum computation with constant error. In Proc. Twenty-Ninth Annual ACM Symposium on Theory of Computing (STOC ‘97) 176–188 (ACM Press, 1997).
Kitaev, A. Y. in Quantum Communication, Computing, and Measurement (eds Hirota, O., Holevo, A. S. & Caves, C. M.) 181–188 (Springer, 1997).
Knill, E., Laflamme, R. & Zurek, W. H. Resilient quantum computation. Science 279, 342–345 (1998).
Terhal, B. M. & Burkard, G. Fault-tolerant quantum computation for local non-Markovian noise. Phys. Rev. A 71, 012336 (2005).
Aliferis, P., Gottesman, D. & Preskill, J. Quantum accuracy threshold for concatenated distance-3 codes. Quantum Inf. Comput. 6, 97–165 (2006).
Raussendorf, R. & Harrington, J. Fault-tolerant quantum computation with high threshold in two dimensions. Phys. Rev. Lett. 98, 190504 (2007).
Moses, S. A. et al. A race-track trapped-ion quantum processor. Phys. Rev. X 13, 041052 (2023).
DeCross, M. et al. The computational power of random quantum circuits in arbitrary geometries. Phys. Rev. X 15, 021052 (2025).
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