基于量子挤压的相干计算最新进展

Bo Lu, Lu Liu, Jun-Yang Song, Kai Wen, Chuan Wang
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引用次数: 0

摘要

光的挤压真空态是量子光学的一个重要概念,与相干真空态相比,它的不确定性在特定的二次方中有所降低。基于挤压态的相干伊辛机(CIMs)能够搜索伊辛模型的基态,可用于解决组合优化问题,实验证明其具有优异的计算性能。本综述介绍了基于光参量振荡器的 CIM 硬件求解器的最新进展,包括延迟光路方案和测量反馈方案。此外,还介绍了基本原理、独特优势和潜在挑战。我们期待大规模 CIM 硬件求解器的应用将对加速计算能力产生巨大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent progress on coherent computation based on quantum squeezing

Squeezed vacuum state of light is an important concept of quantum optics which has an uncertainty reduction in a specific quadrature compared to the coherent vacuum state. The coherent Ising machines (CIMs) based on the squeezed state are capable of searching the ground state of the Ising model, which can be used to solve combinatorial optimization problems and have been experimentally demonstrated to have excellent computational performance. This review introduces the recent progress of a CIM hardware solver based on optical parametric oscillators, including the delayed optical path scheme and a measurement feedback scheme. Also, the basic principles, unique advantages, and potential challenges are described. We expect that the applications of large-scale CIM hardware solvers will have a huge impact on the acceleration of the computation power.

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