论文标题

探测在避免过境点处固态Qubit的连贯性

Probing the coherence of solid-state qubits at avoided crossings

论文作者

Onizhuk, Mykyta, Miao, Kevin C., Blanton, Joseph P., Ma, He, Anderson, Christopher P., Bourassa, Alexandre, Awschalom, David D., Galli, Giulia

论文摘要

宽频段隙半导体中的光学上可寻址的顺磁性缺陷是量子通信和传感的有前途的平台。这些缺陷的电子水平之间避免过境的存在会大大改变其量子动力学,并且对量子信息应用有害和有益。避免的横梁会产生时钟的过渡,这可以显着改善磁噪声的保护,并有利地增加相干时间。但是,在避免过渡时电子旋转之间的电子旋转之间的耦合减少可能对核自旋充当量子记忆的应用有害。在这里,我们提出了一项关于避免穿越的核自旋浴的顺磁性缺陷量子动力学的理论和实验研究。我们基于群集扩展技术的概括开发了一种计算方法,该方法可以解释纯粹的除多范围以外的过程,并描述避免过境的任何固态自旋量子的动力学。使用这种方法和实验验证,我们确定了SIC中Divacancies避免穿越的性质和噪声来源的变化。我们发现,我们可以在多个相邻的核自旋状态下调节SIC中DivaCancs的时钟过渡。在我们的实验中,我们证明了一个人可以用耗尽技术抑制电荷杂质的影响,从而导致时钟过渡时的相干时间增加,纯粹受磁噪声限制。结合自旋汉密尔顿参数的Ab-Initio预测,所提出的理论方法为设计自旋Qubits的相干性能从第一原理设计铺平了道路。

Optically addressable paramagnetic defects in wide-band-gap semiconductors are promising platforms for quantum communications and sensing. The presence of avoided crossings between the electronic levels of these defects can substantially alter their quantum dynamics and be both detrimental and beneficial for quantum information applications. Avoided crossings give rise to clock transitions, which can significantly improve protection from magnetic noise and favorably increase coherence time. However, the reduced coupling between electronic and nuclear spins at an avoided crossing may be detrimental to applications where nuclear spins act as quantum memories. Here we present a combined theoretical and experimental study of the quantum dynamics of paramagnetic defects interacting with a nuclear spin bath at avoided crossings. We develop a computational approach based on a generalization of the cluster expansion technique, which can account for processes beyond pure dephasing and describe the dynamics of any solid-state spin-qubits near avoided crossings. Using this approach and experimental validation, we determine the change in nature and source of noise at avoided crossings for divacancies in SiC. We find that we can condition the clock transition of the divacancies in SiC on multiple adjacent nuclear spins states. In our experiments, we demonstrate that one can suppress the effects of fluctuating charge impurities with depletion techniques, leading to an increased coherence time at clock transition, limited purely by magnetic noise. Combined with ab-initio predictions of spin Hamiltonian parameters, the proposed theoretical approach paves the way to designing the coherence properties of spin qubits from first principles.

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