arXiv Analytics

Sign in

arXiv:2510.01181 [quant-ph]AbstractReferencesReviewsResources

Combining Error Detection and Mitigation: A Hybrid Protocol for Near-Term Quantum Simulation

Dawei Zhong, William Munizzi, Huo Chen, Wibe Albert de Jong

Published 2025-10-01Version 1

Practical implementation of quantum error correction is currently limited by near-term quantum hardware. In contrast, quantum error mitigation has demonstrated strong promise for improving the performance of noisy quantum circuits without the requirement of full fault tolerance. In this work, we develop a hybrid error suppression protocol that integrates Pauli twirling, probabilistic error cancellation, and the $[[n, n-2, 2]]$ quantum error detecting code. In addition, to reduce overhead from error mitigation components of our method, we modify Pauli twirling by lowering the number of Pauli operators in the twirling set, and apply probabilistic error cancellation at the end of the encoded circuit to remove undetectable errors. Finally, we demonstrate our protocol on a non-Clifford variational quantum eigensolver circuit that estimates the ground state energy of $\rm H_2$ using both \texttt{qiskit} AerSimulator and the IBM quantum processor \texttt{ibm\_brussels}.

Related articles: Most relevant | Search more
arXiv:2310.07825 [quant-ph] (Published 2023-10-11)
Probabilistic error cancellation for measurement-based quantum circuits
arXiv:2205.15256 [quant-ph] (Published 2022-05-30)
Towards near-term quantum simulation of materials
arXiv:2201.09866 [quant-ph] (Published 2022-01-24)
Probabilistic error cancellation with sparse Pauli-Lindblad models on noisy quantum processors