物理
量子技术
量子密钥分配
量子网络
量子模拟器
量子信息科学
量子光学
量子信息
量子成像
光子纠缠
开放量子系统
量子传感器
量子纠缠
量子态
量子力学
作者
Han-Sen Zhong,Hui Wang,Yu-Hao Deng,Ming Cheng Chen,Li-Chao Peng,Yi-Han Luo,Jian Qin,Dian-Wu,Xing Ding,Yi Hu,Peng Hu,Xiao Yan Yang,Wei-Jun Zhang,Hao Li,Yuxuan Li,Xiao Jiang,Lin Gan,Guangwen Yang,Lixing You,Zhen Wang
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2020-12-18
卷期号:370 (6523): 1460-1463
被引量:2019
标识
DOI:10.1126/science.abe8770
摘要
A light approach to quantum advantage Quantum computational advantage or supremacy is a long-anticipated milestone toward practical quantum computers. Recent work claimed to have reached this point, but subsequent work managed to speed up the classical simulation and pointed toward a sample size–dependent loophole. Quantum computational advantage, rather than being a one-shot experimental proof, will be the result of a long-term competition between quantum devices and classical simulation. Zhong et al. sent 50 indistinguishable single-mode squeezed states into a 100-mode ultralow-loss interferometer and sampled the output using 100 high-efficiency single-photon detectors. By obtaining up to 76-photon coincidence, yielding a state space dimension of about 10 30 , they measured a sampling rate that is about 10 14 -fold faster than using state-of-the-art classical simulation strategies and supercomputers. Science , this issue p. 1460
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