Quantum Brain
← Back to papers

Hybrid quantum annealing via molecular dynamics

H. Irie, Haozhao Liang, T. Doi, S. Gongyo, T. Hatsuda·April 8, 2020·DOI: 10.1038/s41598-021-87676-z
PhysicsMedicine

AI Breakdown

Get a structured breakdown of this paper — what it's about, the core idea, and key takeaways for the field.

Abstract

A novel quantum–classical hybrid scheme is proposed to efficiently solve large-scale combinatorial optimization problems. The key concept is to introduce a Hamiltonian dynamics of the classical flux variables associated with the quantum spins of the transverse-field Ising model. Molecular dynamics of the classical fluxes can be used as a powerful preconditioner to sort out the frozen and ambivalent spins for quantum annealers. The performance and accuracy of our smooth hybridization in comparison to the standard classical algorithms (the tabu search and the simulated annealing) are demonstrated by employing the MAX-CUT and Ising spin-glass problems.

Related Research

Quantum Intelligence

Ask about quantum research, companies, or market developments.