English

Effective spin models of Kerr-nonlinear parametric oscillators for quantum annealing

Quantum Physics 2022-07-05 v2

Abstract

A method of quantum annealing (QA) using Kerr-nonlinear parametric oscillators (KPOs) was proposed. This method is described by bosonic operators and has different characteristics from QA based on the transverse-field Ising model. As the first step to describe this method in the conventional framework of QA, we propose effective spin models of KPOs. The spin models are obtained via a variant of the Holstein-Primakoff transformation and are described by spin-ss operators. The terms for detuning, coherent driving, parametric driving, and the Kerr effect are mapped to the transverse field, longitudinal field, nonlinear terms for the z- and x-components of spins, respectively. By analyzing the spin models corresponding to KPOs in several settings, we demonstrate that the present spin models for a rather large ss and tuned parameters qualitatively reproduce behavior of KPOs.

Keywords

Cite

@article{arxiv.2202.07160,
  title  = {Effective spin models of Kerr-nonlinear parametric oscillators for quantum annealing},
  author = {Ryoji Miyazaki},
  journal= {arXiv preprint arXiv:2202.07160},
  year   = {2022}
}

Comments

10 pages, 7 figures