量子位元
超导量子计算
超导电性
可扩展性
忠诚
计算机科学
量子计算机
物理
高保真
方案(数学)
量子
量子力学
电信
数学
数学分析
数据库
声学
作者
Yuan Xu,Ji Chu,Jiahao Yuan,Jiawei Qiu,Yuxuan Zhou,Libo Zhang,Xinsheng Tan,Yang Yu,Song Liu,Jian Li,Fei Yan,Dapeng Yu
标识
DOI:10.1103/physrevlett.125.240503
摘要
High-quality two-qubit gate operations are crucial for scalable quantum information processing. Often, the gate fidelity is compromised when the system becomes more integrated. Therefore, a low-error-rate, easy-to-scale two-qubit gate scheme is highly desirable. Here, we experimentally demonstrate a new two-qubit gate scheme that exploits fixed-frequency qubits and a tunable coupler in a superconducting quantum circuit. The scheme requires less control lines, reduces crosstalk effect, simplifies calibration procedures, yet produces a controlled-Z gate in 30ns with a high fidelity of 99.5%, derived from the interleaved randomized benchmarking method. Error analysis shows that gate errors are mostly coherence limited. Our demonstration paves the way for large-scale implementation of high-fidelity quantum operations.
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