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Optimized low-depth quantum circuits for molecular electronic structure using a separable-pair approximation

Jakob S. Kottmann, Alán Aspuru‐Guzik

2022Physical review. A/Physical review, A47 citationsDOIOpen Access PDF

Abstract

We present a classically tractable model that leads to optimized low-depth quantum circuits leveraging separable-pair approximations. The obtained circuits are well suited as a baseline circuit for emerging quantum hardware and can, in the long term, provide significantly improved initial states for quantum algorithms. The associated wave functions can be represented with linear memory requirement, which allows classical optimization of the circuits and naturally defines a minimum benchmark for quantum algorithms. In this work we employ directly determined pair-natural orbitals within a basis-set-free approach. This leads to accurate representation of the one- and many-body parts for weakly correlated systems and we explicitly illustrate how the model can be integrated into other quantum algorithms for stronger correlated systems.

Topics & Concepts

Benchmark (surveying)Electronic circuitQuantumRepresentation (politics)Computer scienceQuantum algorithmAlgorithmSet (abstract data type)Separable spaceTopology (electrical circuits)MathematicsPhysicsQuantum mechanicsMathematical analysisPoliticsGeodesyGeographyLawCombinatoricsPolitical scienceProgramming languageQuantum Computing Algorithms and ArchitectureQuantum Information and CryptographyQuantum and electron transport phenomena
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