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- W3100598599 abstract "As existing approaches to get around the restriction of the no-go theorem generally exhibit high ancillary qubit overhead costs, we propose a scheme for universal fault-tolerant quantum computation by using the pieceable fault-tolerant protocol and code switching techniques. In additional, by utilizing the construction of the pieceable fault-tolerant circuit, we adopt a decoding strategy based on a deep-neural-network algorithm to improve the error threshold of the non-Clifford logical gate circuit. We describe our universal construction in detail with a two-level nonuniform concatenated 25-qubit code and perform numerical simulations to analyze the depolarizing noise threshold of a given universal gate set with this code. The resources required to implement this universal gate set are also estimated to further demonstrate the efficiency of our scheme. We compare these results with the existing universal concatenation methods and conclude that our method outperforms them in terms of the lower bound of the error threshold and qubit resource overhead." @default.
- W3100598599 created "2020-11-23" @default.
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- W3100598599 date "2020-11-17" @default.
- W3100598599 modified "2023-09-23" @default.
- W3100598599 title "Concatenated pieceable fault-tolerant scheme for universal quantum computation" @default.
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- W3100598599 doi "https://doi.org/10.1103/physreva.102.052415" @default.
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