量子计算机
量子位元
量子纠错
量子门
量子隐形传态
量子网络
量子技术
量子模拟器
里德伯公式
物理
量子力学
开放量子系统
量子信息
量子
计算机科学
离子
电离
作者
Manuel Morgado,S. Whitlock
出处
期刊:AVS quantum science
[American Vacuum Society]
日期:2021-05-03
卷期号:3 (2)
被引量:213
摘要
Arrays of optically trapped atoms excited to Rydberg states have recently emerged as a competitive physical platform for quantum simulation and computing, where high-fidelity state preparation and readout, quantum logic gates and controlled quantum dynamics of more than 100 qubits have all been demonstrated. These systems are now approaching the point where reliable quantum computations with hundreds of qubits and realistically thousands of multiqubit gates with low error rates should be within reach for the first time. In this article we give an overview of the Rydberg quantum toolbox, emphasizing the high degree of flexibility for encoding qubits, performing quantum operations and engineering quantum many-body Hamiltonians. We then review the state-of-the-art concerning high-fidelity quantum operations and logic gates as well as quantum simulations in many-body regimes. Finally, we discuss computing schemes that are particularly suited to the Rydberg platform and some of the remaining challenges on the road to general purpose quantum simulators and quantum computers.
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