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Calculating the Dissociation Curve of Molecular Nitrogen on a Superconducting Quantum Computer

ORAL

Abstract

The contextual subspace variational quantum eigensolver (CS-VQE) is a hybrid quantum-classical algorithm that approximates the ground-state energy of a given Hamiltonian. In this work we present an experimental demonstration of the CS-VQE algorithm on superconducting quantum hardware. We compute the potential energy curve for molecular nitrogen, where a dominance of static correlation in the dissociation limit proves challenging for many conventional quantum chemistry techniques. The CS-VQE methodology is competitive with standard subspace methods used in quantum chemistry, but at a considerable saving of quantum resource, meaning different active spaces can be treated for a fixed qubit allowance.

Publication: Tim Weaving, Alexis Ralli, Peter J. Love, Sauro Succi, & Peter V. Coveney, Contextual Subspace Variational Quantum Eigensolver Calculation of the Dissociation Curve of Molecular Nitrogen on a Superconducting Quantum Computer, arXiv preprint arXiv:2312.04392 (2024)

Presenters

  • Alexis P Ralli

    Tufts University

Authors

  • Alexis P Ralli

    Tufts University

  • Tim Weaving

    University College London

  • Peter J Love

    Tufts University

  • Sauro Succi

    IAC/NRC, Italian Institute of Technology

  • Peter V Coveney

    University College London