Coherent Dipolar Coupling between Magnetoelastic Waves and Nitrogen Vacancy Centers

Adi Jung, Samuel Margueron, Ausrine Bartasyte, Sayeef Salahuddin
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Abstract

We experimentally demonstrate coherent Rabi oscillations of Nitrogen Vacancy (NV) centers by magnetoelastic waves. The coupling is consistent with dipolar stray field drive from spin-wave modes in a ferromagnetic film, and displays a significant improvement in Radio Frequency power efficiency relative to other methods of microwave excitation. Further, it demonstrates coherent coupling with NV centers over mm-scale distances from the microwave excitation source. By utilizing a piezoelectric-magnetostrictive heterostucture, where magnetoelastic waves can be launched by an applied voltage, a pure voltage driven coherent drive of the NV centers is achieved. This voltage driven, magnetoelastic excitation enables a new approach to couple with two level quantum states that is not reliant on long spin-wave coherence lengths.
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磁弹性波与氮空位中心之间的相干双极耦合
我们通过实验证明了磁弹性波对氮空位(NV)中心的相干拉比振荡。这种耦合与铁磁薄膜中自旋波模式产生的双极性磁场驱动相一致,与其他微波激励方法相比,射频功率效率有显著提高。通过利用压电-磁致伸缩异质结构,磁弹性波可以通过外加电压发射,从而实现了对 NV 中心的纯电压驱动相干驱动。这种电压驱动的磁弹性激发实现了一种与两级量子态耦合的新方法,它不依赖于较长的自旋波相干长度。
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