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Efficient, uniform, and large-volume microwave magnetic coupling to NV centers in diamond using dielectric resonator antennas

机译:使用介电共振器天线将金刚石有效地,均匀且大量地微波耦合到金刚石的NV中心

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Ensembles of nitrogen-vacancy color centers in diamond hold promise for ultra-precise magnetometery, competing with superconducting quantum interference device detectors. Sensor and metrology applications for situations involving high sensitivity require efficient manipulation of the nitrogen-vacancy color centers electronic spins within large volume. Thus, the design of microwave antennas providing a uniform and strong microwave magnetic field over a relatively large volume is on a high demand. In this paper we report different antenna designs based on low loss high permittivity dielectric materials for coherent manipulation of a large ensemble of nitrogen-vacancy color centers in diamond. The operational principle of the proposed antennas is based on excitation of transverse electric (TE) or hybrid electromagnetic (HEM) modes of dielectric resonators. The first antenna design is based on TE_(01) mode excited inside the resonator made on a ceramic with permittivity of 80. The uniformity of the microwave magnetic field generated by the antenna was verified by measurement of the optically detected magnetic resonance and Rabi frequency in a high-density ensemble of nitrogen-vacancy color centers placed in the center bore of the antenna. Rabi frequency of 10 MHz in a volume of 7 cubic millimeters with a standard deviation of less than 1% at 5 W pump power has been measured at the room temperature. This is enough to coherently excite all color centers in commercially available diamond plates at room temperature. The second antenna design is based on HEM_(11δ) mode excited in the ceramic resonator characterized by the permittivity of 235. The numerical simulations predict the Rabi frequency value of 34.85 MHz in a volume of 6 cubic millimeters with a standard deviation of less than 5% at 5 W pump power. The obtained result paves the way to improve the sensitivity of cutting-edge nitrogen-vacancy color centers based magnetometers by several orders of magnitude, practically reaching superconducting quantum interference device detectors level of sensitivity.
机译:钻石中氮原子空位色心的集合有望实现超精密磁力计,与超导量子干涉仪探测器竞争。在涉及高灵敏度的情况下,传感器和计量学应用需要有效处理大体积中的氮空位色心电子自旋。因此,对在相对大的体积上提供均匀且强的微波磁场的微波天线的设计提出了很高的要求。在本文中,我们报告了基于低损耗高介电常数介电材料的不同天线设计,这些设计用于对钻石中大量的氮空位色心进行相干处理。所提出的天线的工作原理是基于介质谐振器的横向电(TE)或混合电磁(HEM)模式的激励。第一种天线设计是基于在陶瓷上制成的,其介电常数为80的谐振器内部激发的TE_(01)模式。通过测量光学检测到的磁共振和Rabi频率,验证了天线产生的微波磁场的均匀性。放置在天线中心孔中的氮空位色中心的高密度集合。已在室温下测量了7 MHz的体积中10 MHz的拉比频率,在5 W泵浦功率下的标准偏差小于1%。这足以在室温下连贯地激发市售金刚石板中的所有色心。第二种天线设计基于陶瓷谐振器中激发的HEM_(11δ)模式,其介电常数为235。数值模拟预测在6立方毫米的体积中Rabi频率值为34.85 MHz,标准偏差小于5 %在5 W泵浦功率下。获得的结果为将基于尖端的氮空位色心的磁力计的灵敏度提高了几个数量级铺平了道路,实际上达到了超导量子干涉仪探测器的灵敏度水平。

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