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Photonics provides a viable path to a scalable fault-tolerant quantum computer.
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2023
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O. Higgott, T. C. Bohdanowicz, A. Kubica, S. T. Flammia, and E. T. Campbell, Improved decoding of circuit noise and fragile boundaries of tailored surface codes, Phys. Rev. X 13
2023
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2023
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2023
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E. T. Campbell, A theory of single-shot error correction for adversarial noise, Quantum Sci. Technol. 4
2019
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K. Duivenvoorden, N. P. Breuckmann, and B. M. Terhal, Renormalization group decoder for a four-dimensional toric code, IEEE Trans. Inf. Theory 65
2019
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2020
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2020
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2020
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2020
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W. Zeng and L. P. Pryadko, Minimal distances for certain quantum product codes and tensor products of chain complexes, Phys. Rev. A 102
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2023
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2023
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2023
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2023
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2024
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X. Fu and D. Gottesman, Error correction in dynamical codes (2024), arXiv:2403.04163 [quant-ph]
2024
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2024
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2024
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2024
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2024
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D. Bluvstein and others, Logical quantum processor based on reconfigurable atom arrays, Nature 626
2024
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2024
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M. L. Liu, N. Tantivasadakarn, and V. V. Albert, Subsystem CSS codes, a tighter stabilizer-to-CSS mapping, and Goursat’s Lemma, Quantum 8
2024
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K. Alexander et al. , A manufacturable platform for photonic quantum computing, Nature 10.1038/s41586-025-08820-7 (2025)
2025
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2025
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H. Aghaee Rad and others, Scaling and networking a modular photonic quantum computer, Nature 638
2025
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Y. Li, Low-density parity-check representation of fault-tolerant quantum circuits, Phys. Rev. Res. 7
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2025
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