Multi-qubit correction for quantum annealers Journal Article uri icon

Overview

abstract

  • AbstractWe present multi-qubit correction (MQC) as a novel postprocessing method for quantum annealers that views the evolution in an open-system as a Gibbs sampler and reduces a set of excited states to a new synthetic state with lower energy value. After sampling from the ground state of a given (Ising) Hamiltonian, MQC compares pairs of excited states to recognize virtual tunnels—i.e., a group of qubits that changing their states simultaneously can result in a new state with lower energy value—and successively converges to the ground state. Experimental results using D-Wave 2000Q quantum annealers demonstrate that MQC finds samples with notably lower energy values and improves the reproducibility of results when compared to recent hardware/software advances in the realm of quantum annealing, such as spin-reversal transforms, classical postprocessing techniques, and increased inter-sample delay between successive measurements.

publication date

  • August 9, 2021

Date in CU Experts

  • June 20, 2025 2:45 AM

Full Author List

  • Ayanzadeh R; Dorband J; Halem M; Finin T

author count

  • 4

Other Profiles

Electronic International Standard Serial Number (EISSN)

  • 2045-2322

Additional Document Info

volume

  • 11

issue

  • 1

number

  • 16119