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一个用于 2000 节点优化问题的连贯伊辛机。

A coherent Ising machine for 2000-node optimization problems.

机构信息

NTT Basic Research Laboratories, NTT Corporation, 3-1 Morinosato Wakamiya, Atsugi, Kanagawa 243-0198, Japan.

Department of Mathematical Informatics, University of Tokyo, Hongo 7-3-1, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

Science. 2016 Nov 4;354(6312):603-606. doi: 10.1126/science.aah4243. Epub 2016 Oct 20.

Abstract

The analysis and optimization of complex systems can be reduced to mathematical problems collectively known as combinatorial optimization. Many such problems can be mapped onto ground-state search problems of the Ising model, and various artificial spin systems are now emerging as promising approaches. However, physical Ising machines have suffered from limited numbers of spin-spin couplings because of implementations based on localized spins, resulting in severe scalability problems. We report a 2000-spin network with all-to-all spin-spin couplings. Using a measurement and feedback scheme, we coupled time-multiplexed degenerate optical parametric oscillators to implement maximum cut problems on arbitrary graph topologies with up to 2000 nodes. Our coherent Ising machine outperformed simulated annealing in terms of accuracy and computation time for a 2000-node complete graph.

摘要

复杂系统的分析和优化可以归结为组合优化这一数学问题。许多这样的问题可以被映射到伊辛模型的基态搜索问题上,并且各种人工自旋系统现在作为有前途的方法出现。然而,由于基于局域自旋的实现,物理伊辛机受到自旋-自旋耦合数量的限制,导致严重的可扩展性问题。我们报告了一个具有全连接自旋-自旋耦合的 2000 自旋网络。使用测量和反馈方案,我们将时分复用简并光参量振荡器耦合起来,在多达 2000 个节点的任意图拓扑上实现最大切割问题。在一个 2000 个节点的完全图上,我们的相干伊辛机在准确性和计算时间方面优于模拟退火。

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