DOE OSTI · 2376203
CV4Quantum: Reducing the Sampling Overhead in Probabilistic Error Cancellation Using Control Variates
Abstract
Quasiprobabilistic decompositions (QPDs) play a key role in maximizing the utility of near-term quantum hardware. For example, Probabilistic Error Cancellation (PEC) (an error mitigation technique) and circuit cutting (which enables large quantum computations to be performed on quantum hardware with a limited number of qubits) both involve QPDs. Computations based on QPDs typically incur large sampling overheads that grow exponentially with the number of error-terms mitigated or number of circuit-cuts employed, limiting their practical feasibility. In this work, we adapt the control variates variance reduction technique from the statistics literature in order to reduce the sampling overhead in QPD-based computations. We demonstrate our method using simulation experiments that mimic a realistic PEC scenario. In our experiments, we observed a more than 50% reduction in the number of samples needed to achieve a given precision, in more than 50% of the PEC-based estimations performed in the study when using our approach. We discuss how future research on constructing good control variates can lead to even stronger sampling overhead reduction.
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Shyamsundar, Prasanth [Fermilab] (ORCID:0000000227489091), Yeong, Wern Yeen [Notre Dame U.] (ORCID:0000000329071710). 2025-02-12. CV4Quantum: Reducing the Sampling Overhead in Probabilistic Error Cancellation Using Control Variates. https://doi.org/10.48550/arxiv.2502.08735
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