论文标题

宽带微波检测使用杂交钻石碎片传感器芯片中的电子自旋

Broadband microwave detection using electron spins in a hybrid diamond-magnet sensor chip

论文作者

Carmiggelt, Joris J., Bertelli, Iacopo, Mulder, Roland W., Teepe, Annick, Elyasi, Mehrdad, Simon, Brecht G., Bauer, Gerrit E. W., Blanter, Yaroslav M., van der Sar, Toeno

论文摘要

量子传感已发展为量子科学技术的主要分支。它旨在测量具有高分辨率,灵敏度和动态范围的物理量。钻石中的电子旋转是强大的磁场传感器,但是它们在微波处理方面的灵敏度仅限于它们的共振频率周围的狭窄带。在这里,我们意识到使用与薄膜磁铁连接的钻石中的旋转中的宽带微波检测。泵场通过磁体的非线性自旋波动力学将目标微波信号局部转换为传感器自旋频率。两种互补的转换协议可以对Gigahertz带宽进行感应和高保真自旋控制,从而可以在传感器旋转频率上方的多个GIGAHERTZ上表征自旋波段。可泵可的混合钻石磁铁传感器芯片为在小磁性偏置场的100 gigahertz状态中基于自旋的传感开辟了道路。

Quantum sensing has developed into a main branch of quantum science and technology. It aims at measuring physical quantities with high resolution, sensitivity, and dynamic range. Electron spins in diamond are powerful magnetic field sensors, but their sensitivity in the microwave regime is limited to a narrow band around their resonance frequency. Here, we realize broadband microwave detection using spins in diamond interfaced with a thin-film magnet. A pump field locally converts target microwave signals to the sensor-spin frequency via the non-linear spin-wave dynamics of the magnet. Two complementary conversion protocols enable sensing and high-fidelity spin control over a gigahertz bandwidth, allowing characterization of the spin-wave band at multiple gigahertz above the sensor-spin frequency. The pump-tunable, hybrid diamond-magnet sensor chip opens the way for spin-based sensing in the 100-gigahertz regime at small magnetic bias fields.

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