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Spacetime codes of Clifford circuits

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arxiv 2304.05943 v2 pith:2GHC2S4D submitted 2023-04-12 quant-ph cs.ITmath.IT

classification quant-phcs.ITmath.IT
keywords codecircuitoutcomespacetimecliffordcodescorrectingconstruct
verification ladder T0 review T1 audit T2 compute T3 formal
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We propose a scheme for detecting and correcting faults in any Clifford circuit. The scheme is based on the observation that the set of all possible outcome bit-strings of a Clifford circuit is a linear code, which we call the outcome code. From the outcome code we construct a corresponding stabilizer code, the spacetime code. Our construction extends the circuit-to-code construction of Bacon, Flammia, Harrow and Shi [2], revisited recently by Gottesman [16], to include intermediate and multi-qubit measurements. With this correspondence, we reduce the problem of correcting faults in a circuit to the well-studied problem of correcting errors in a stabilizer code. More precisely, a most likely error decoder for the spacetime code can be transformed into a most likely fault decoder for the circuit. We give efficient algorithms to construct the outcome and spacetime codes. We also identify conditions under which these codes are LDPC, and give an algorithm to generate low-weight checks, which can then be combined with effcient LDPC code decoders.

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Cited by 3 Pith papers

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  1. Sampling hard circuits with verifiably high fidelity

    quant-ph 2026-07 conditional novelty 8.0 of 10

    A 97-qubit experiment certifies a 0.284 fidelity lower bound for a 468-T-gate sampling circuit by combining spacetime-code error detection with the measured fidelity of an undoped Clifford reference.

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