中文版 | English
题名

Beating the break-even point with a discrete-variable-encoded logical qubit

作者
通讯作者Sun,Luyan; Xu,Yuan; Yu,Dapeng
发表日期
2023-04-06
DOI
发表期刊
ISSN
0028-0836
EISSN
1476-4687
卷号616期号:7955页码:56-60
摘要
Quantum error correction (QEC) aims to protect logical qubits from noises by using the redundancy of a large Hilbert space, which allows errors to be detected and corrected in real time. In most QEC codes, a logical qubit is encoded in some discrete variables, for example photon numbers, so that the encoded quantum information can be unambiguously extracted after processing. Over the past decade, repetitive QEC has been demonstrated with various discrete-variable-encoded scenarios. However, extending the lifetimes of thus-encoded logical qubits beyond the best available physical qubit still remains elusive, which represents a break-even point for judging the practical usefulness of QEC. Here we demonstrate a QEC procedure in a circuit quantum electrodynamics architecture, where the logical qubit is binomially encoded in photon-number states of a microwave cavity, dispersively coupled to an auxiliary superconducting qubit. By applying a pulse featuring a tailored frequency comb to the auxiliary qubit, we can repetitively extract the error syndrome with high fidelity and perform error correction with feedback control accordingly, thereby exceeding the break-even point by about 16% lifetime enhancement. Our work illustrates the potential of hardware-efficient discrete-variable encodings for fault-tolerant quantum computation.
相关链接[Scopus记录]
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语种
英语
重要成果
NI论文 ; ESI高被引
学校署名
第一 ; 通讯
资助项目
Key-Area Research and Development Program of Guangdong Province["2018B030326001","2020B0303030001"] ; Shenzhen Science and Technology Program[RCYX20210706092103021] ; National Natural Science Foundation of China["12274198","11904158","U1801661","12274080","12061131011","92265210","92165209","11925404","11890704","11875108"] ; Guangdong Basic and Applied Basic Research Foundation[2022A1515010324] ; Guangdong Provincial Key Laboratory["2019B121203002","2016ZT06D348"] ; Science, Technology and Innovation Commission of Shenzhen Municipality[KYTDPT20181011104202253] ; Shenzhen-Hong Kong cooperation zone for technology and innovation[HZQB-KCZYB-2020050] ; National Key Research and Development Program of China[2017YFA0304303] ; China Postdoctoral Science Foundation[BX2021167] ; Innovation Program for Quantum Science and Technology["ZD0301703","ZD0102040201"] ; Natural Science Foundation of Beijing[Z190012]
WOS研究方向
Science & Technology - Other Topics
WOS类目
Multidisciplinary Sciences
WOS记录号
WOS:000957757400017
出版者
ESI学科分类
BIOLOGY & BIOCHEMISTRY;CLINICAL MEDICINE;MULTIDISCIPLINARY;PLANT & ANIMAL SCIENCE;ENVIRONMENT/ECOLOGY;SOCIAL SCIENCES, GENERAL;MICROBIOLOGY;ECONOMICS BUSINESS;IMMUNOLOGY;MATERIALS SCIENCE;COMPUTER SCIENCE;SPACE SCIENCE;MOLECULAR BIOLOGY & GENETICS;CHEMISTRY;NEUROSCIENCE & BEHAVIOR;PHYSICS;GEOSCIENCES;ENGINEERING
Scopus记录号
2-s2.0-85150692421
来源库
Scopus
引用统计
被引频次[WOS]:50
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/524169
专题量子科学与工程研究院
理学院_物理系
作者单位
1.Shenzhen Institute for Quantum Science and Engineering,Southern University of Science and Technology,Shenzhen,China
2.Guangdong Provincial Key Laboratory of Quantum Science and Engineering,Southern University of Science and Technology,Shenzhen,China
3.Department of Physics,Southern University of Science and Technology,Shenzhen,China
4.Center for Quantum Information,Institute for Interdisciplinary Information Sciences,Tsinghua University,Beijing,China
5.Fujian Key Laboratory of Quantum Information and Quantum Optics,College of Physics and Information Engineering,Fuzhou University,Fuzhou,China
6.Beijing Academy of Quantum Information Sciences,Beijing,China
7.International Quantum Academy,and Shenzhen Branch,Hefei National Laboratory,Shenzhen,China
8.CAS Key Laboratory of Quantum Information,University of Science and Technology of China,Hefei,China
9.Hefei National Laboratory,Hefei,China
第一作者单位量子科学与工程研究院;  物理系
通讯作者单位量子科学与工程研究院;  物理系
第一作者的第一单位量子科学与工程研究院
推荐引用方式
GB/T 7714
Ni,Zhongchu,Li,Sai,Deng,Xiaowei,et al. Beating the break-even point with a discrete-variable-encoded logical qubit[J]. Nature,2023,616(7955):56-60.
APA
Ni,Zhongchu.,Li,Sai.,Deng,Xiaowei.,Cai,Yanyan.,Zhang,Libo.,...&Yu,Dapeng.(2023).Beating the break-even point with a discrete-variable-encoded logical qubit.Nature,616(7955),56-60.
MLA
Ni,Zhongchu,et al."Beating the break-even point with a discrete-variable-encoded logical qubit".Nature 616.7955(2023):56-60.
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