物理
量子位元
相干控制
旋转
量子门
量子力学
量子计算机
自旋(空气动力学)
相干时间
氮空位中心
连贯性(哲学赌博策略)
量子纠错
量子技术
自旋工程
量子网络
量子纠缠
电子
量子
开放量子系统
自旋极化
凝聚态物理
热力学
作者
Swathi S. Hegde,Jingfu Zhang,Dieter Suter
标识
DOI:10.1103/physrevlett.124.220501
摘要
Hybrid quantum registers, such as electron-nuclear spin systems, have emerged as promising hardware for implementing quantum information and computing protocols in scalable systems. Nevertheless, the coherent control of such systems still faces challenges. Particularly, the lower gyromagnetic ratios of the nuclear spins cause them to respond slowly to control fields, resulting in gate times that are generally longer than the coherence time of the electron. Here, we demonstrate a scheme for circumventing this problem by indirect control: we apply a small number of short pulses only to the electron and let the full system undergo free evolution under the hyperfine coupling between the pulses. Using this scheme, we realize robust quantum gates in an electron-nuclear spin system, including a Hadamard gate on the nuclear spin and a controlled-NOT gate with the nuclear spin as the target qubit. The durations of these gates are shorter than the electron coherence time, and thus additional operations to extend the system coherence time are not needed. Our demonstration serves as a proof of concept for achieving efficient coherent control of electron-nuclear spin systems, such as nitrogen vacancy centers in diamond. Our scheme is still applicable when the nuclear spins are only weakly coupled to the electron.
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