English

A coherent Ising machine for MAX-CUT problems : Performance evaluation against semidefinite programming relaxation and simulated annealing

Quantum Physics 2016-03-01 v5

Abstract

Combinatorial optimization problems are computationally hard in general, but they are ubiquitous in our modern life. A coherent Ising machine (CIM) based on a multiple-pulse degenerate optical parametric oscillator (DOPO) is an alternative approach to solve these problems by a specialized physical computing system. To evaluate its potential performance, computational experiments are performed on maximum cut (MAX-CUT) problems against traditional algorithms such as semidefinite programming relaxation of Goemans-Williamson and simulated annealing by Kirkpatrick, et al. The numerical results empirically suggest that the almost constant computation time is required to obtain the reasonably accurate solutions of MAX-CUT problems on a CIM with the number of vertices up to 2×1042 \times 10^4 and the number of edges up to 10810^8.

Keywords

Cite

@article{arxiv.1501.07030,
  title  = {A coherent Ising machine for MAX-CUT problems : Performance evaluation against semidefinite programming relaxation and simulated annealing},
  author = {Yoshitaka Haribara and Shoko Utsunomiya and Ken-ichi Kawarabayashi and Yoshihisa Yamamoto},
  journal= {arXiv preprint arXiv:1501.07030},
  year   = {2016}
}

Comments

10 pages, 9 figures; v5: typo in Table 1 (C_best of g22 is 0.9450)

R2 v1 2026-06-22T08:14:41.565Z