Multireference error mitigation for quantum computation of chemistry
Artikel i vetenskaplig tidskrift, 2025

Quantum error mitigation (QEM) strategies are essential for improving the precision and reliability of quantum chemistry algorithms on noisy intermediate-scale quantum devices. Reference-state error mitigation (REM) is a cost-effective chemistry-inspired QEM method that performs well for weakly correlated problems. However, the effectiveness of REM is often limited when applied to strongly correlated systems. Here, we introduce multireference-state error mitigation (MREM), an extension of REM that systematically captures quantum hardware noise in strongly correlated ground states by utilizing multireference states. A pivotal aspect of MREM is using Givens rotations to efficiently construct quantum circuits to generate multireference states. To strike a balance between circuit expressivity and noise sensitivity, we employ compact wavefunctions composed of a few dominant Slater determinants. These truncated multireference states, engineered to exhibit substantial overlap with the target ground state, can effectively enhance error mitigation in variational quantum eigensolver experiments. We demonstrate the effectiveness of MREM through comprehensive simulations of molecular systems H2O, N2, and F2, underscoring its ability to realize significant improvements in computational accuracy compared to the original REM method. MREM broadens the scope of error mitigation to encompass a wider variety of molecular systems, including those exhibiting pronounced electron correlation.

Författare

Hang Zou

Göteborgs universitet

Chalmers, Data- och informationsteknik, Data Science och AI

Erika Magnusson

Kemi och biokemi doktorander och postdocs

Hampus Brunander

Chalmers, Kemi och kemiteknik, Kemi och biokemi

Werner Barucha-Dobrautz

Chalmers, Kemi och kemiteknik, Kemi och biokemi

Göteborgs universitet

Technische Universität Dresden

Martin Rahm

Chalmers, Kemi och kemiteknik, Kemi och biokemi

DIGITAL DISCOVERY

2635-098X (eISSN)

Vol. In Press

QC-SQUARED

Europeiska kommissionen (EU) (EC/HE/101062864), 2022-01-07 -- 2025-06-30.

Open Superconducting Quantum Computers (OpenSuperQPlus)

Europeiska kommissionen (EU) (EC/HE/101113946), 2023-03-01 -- 2026-08-31.

Ämneskategorier (SSIF 2025)

Teoretisk kemi

Infrastruktur

Chalmers e-Commons (inkl. C3SE, 2020-)

DOI

10.1039/d5dd00202h

Relaterade dataset

Multireference error mitigation for quantum computation of chemistry [dataset]

URI: https://doi.org/10.5281/zenodo.15827822

Mer information

Senast uppdaterat

2025-08-22