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首页> 外文期刊>Nature Communications >Radio frequency measurements of tunnel couplings and singlet-triplet spin states in Si:P quantum dots
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Radio frequency measurements of tunnel couplings and singlet-triplet spin states in Si:P quantum dots

机译:Si:P量子点中隧道耦合和单重态-三重态自旋态的射频测量

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摘要

Spin states of the electrons and nuclei of phosphorus donors in silicon are strong candidates for quantum information processing applications given their excellent coherence times. Designing a scalable donor-based quantum computer will require both knowledge of the relationship between device geometry and electron tunnel couplings, and a spin readout strategy that uses minimal physical space in the device. Here we use radio frequency reflectometry to measure singlet-triplet states of a few-donor Si:P double quantum dot and demonstrate that the exchange energy can be tuned by at least two orders of magnitude, from 20 meV to 8 meV. We measure dot-lead tunnel rates by analysis of the reflected signal and show that they change from 100MHz to 22 GHz as the number of electrons on a quantum dot is increased from 1 to 4. These techniques present an approach for characterizing, operating and engineering scalable qubit devices based on donors in silicon.
机译:硅中磷供体的电子和原子核的自旋态具有出色的相干时间,因此是量子信息处理应用的强力候选者。设计可伸缩的基于供体的量子计算机将需要了解设备几何形状与电子隧道耦合之间的关系,以及需要使用设备中最小物理空间的自旋读出策略。在这里,我们使用射频反射法测量几个施主Si:P双量子点的单重态-三重态,并证明交换能至少可以调节两个数量级,从20 meV到8 meV。我们通过分析反射信号来测量点-铅隧道速率,结果表明,随着量子点上电子数量从1增加到4,它们从100MHz变为22 GHz。这些技术提供了表征,操作和工程设计的方法基于硅供体的可扩展量子比特设备。

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