Toward Fault-Tolerant Variational Optimization: QAOA under [[4,2,2]] Error Detection
Matteo Robert Child, Emanuele Dri, Giacomo Vitali, Chiara Vercellino, Alberto Leporati
Abstract
We present a partially fault-tolerant implementation of QAOA based on the [[4,2,2]] error-detection code, targeting the Max-Cut problem on a square graph. Our main contribution is a novel ancilla-mediated logical RZZ gate enabling interactions between qubits in different [[4,2,2]] blocks. We evaluate unencoded and encoded circuits under five noise models, with both all-to-all and grid-routed connectivity, using the Cirq and qsimcirq frameworks with parallel CPU execution. Post-selection on stabilizer measurements consistently improves the probability of sampling optimal bitstrings, with five measurements providing the strongest benefit. These results support error-detection as a practical near-term strategy for improving the quality of variational quantum algorithms.
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