Cyclic Quantum Annealing: Searching for Deep Low-Energy States in 5000-Qubit Spin Glass
Disordered Systems and Neural Networks
2024-12-31 v2 Statistical Mechanics
Quantum Physics
Abstract
Quantum computers promise a qualitative speedup in solving a broad spectrum of practical optimization problems. The latter can be mapped onto the task of finding low-energy states of spin glasses, which is known to be exceedingly difficult. Using D-Wave's 5000-qubit quantum processor, we demonstrate that a recently proposed iterative cyclic quantum annealing algorithm can find deep low-energy states in record time. We also find intricate structures in a low-energy landscape of spin glasses, such as a power-law distribution of connected clusters with a small surface energy. These observations offer guidance for further improvement of the optimization algorithms.
Cite
@article{arxiv.2403.01034,
title = {Cyclic Quantum Annealing: Searching for Deep Low-Energy States in 5000-Qubit Spin Glass},
author = {Hao Zhang and Kelly Boothby and Alex Kamenev},
journal= {arXiv preprint arXiv:2403.01034},
year = {2024}
}
Comments
9 pages, 5 figures