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Exact logical error rates for magic state cultivation

Published 16 Sep 2026 in quant-ph | (2609.18922v1)

Abstract: We compute exactly the acceptance and logical error rates for the distance d=3d=3 and d=5d=5 magic state cultivation circuits from Clifft [arXiv:2604.27058] and SOFT [arXiv:2512.23037] using Pauli propagation and binary tensor contraction. Actual TT gates are studied, not the SS-gate proxy used for sampling. The calculation includes every fault order at several circuit-level noise strengths (pp). We provide a series expansion form to the logical error rates, through order (p/(1−p))<sup>10(p/(1-p))<sup>{10}. The analytical results recover the numerical values from Clifft and SOFT at both d=3d=3 and d=5d=5 to within their sampling uncertainty. Then, we show that the d=3d=3 and d=5d=5 circuits actually have fault distances of dfault=2d_{\text{fault}}=2 and dfault=3d_{\text{fault}}=3 respectively, explaining the similar distance degrading effects from the companion code of [Quantum 10, 2134 (2026)].

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