物理
量子计算机
量子
量子纠错
量子信息
计算
工作(物理)
量子算法
容错
计算机工程
算法
计算机科学
量子力学
分布式计算
作者
Zhenyu Cai,Ryan Babbush,Simon C. Benjamin,Suguru Endo,William J. Huggins,Ying Li,Jarrod R. McClean,Thomas E. O’Brien
标识
DOI:10.1103/revmodphys.95.045005
摘要
In most of physics it is normal to obtain information by analysis of noisy data. The paradigm of quantum computing has been a simplified version of this -- one measurement of a two-level system gives one bit of reliable information about the result of a computation. But real-world quantum computers do not work this way: the noisiness of quantum evolution also requires good strategies for extracting information. This review covers many error-mitigation strategies used in present-day quantum processors. These strategies make it much more feasible to obtain useful results before fault tolerance is achieved.
科研通智能强力驱动
Strongly Powered by AbleSci AI