Improving the coherence properties of solid-state spin ensembles via optimized dynamical decoupling

D. Farfurnik, A. Jarmola, L. Pham, Z. H. Wang, V. Dobrovitski, R. Walsworth, D. Budker, N. Bar-Gill
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引用次数: 4

Abstract

In this work, we optimize a dynamical decoupling (DD) protocol to improve the spin coherence properties of a dense ensemble of nitrogen-vacancy (NV) centers in diamond. Using liquid nitrogen-based cooling and DD microwave pulses, we increase the transverse coherence time T2 from ∼ 0.7 ms up to ∼ 30 ms. We extend previous work of single-axis (Carr-Purcell-Meiboom-Gill) DD towards the preservation of arbitrary spin states. After performing a detailed analysis of pulse and detuning errors, we compare the performance of various DD protocols. We identify that the concatenated XY8 pulse sequences serves as the optimal control scheme for preserving an arbitrary spin state. Finally, we use the concatenated sequences to demonstrate an immediate improvement of the AC magnetic sensitivity up to a factor of two at 250 kHz. For future work, similar protocols may be used to increase coherence times up to NV-NV interaction time scales, a major step toward the creation of quantum collective NV spin states.
通过优化的动态解耦改善固态自旋系综的相干性
在这项工作中,我们优化了一种动态解耦(DD)协议,以改善金刚石中氮空位(NV)中心密集系综的自旋相干性。利用液氮冷却和DD微波脉冲,我们将横向相干时间T2从0.7 ms增加到30 ms。我们将单轴(Carr-Purcell-Meiboom-Gill) DD扩展到任意自旋态的保存。在对脉冲和失谐误差进行详细分析后,我们比较了各种DD协议的性能。我们发现串联的XY8脉冲序列是保持任意自旋态的最优控制方案。最后,我们使用串联序列来证明在250 kHz时交流磁灵敏度可立即提高到两倍。在未来的工作中,类似的协议可以用来增加相干时间到NV-NV相互作用的时间尺度,这是创造量子集体NV自旋态的重要一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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