论文标题
在室温下核自旋合奏的相干微波控制
Coherent Microwave Control of a Nuclear Spin Ensemble at Room Temperature
论文作者
论文摘要
我们在钻石中名义上使用氮化中心(NV)中的核核自旋跃迁,以在室温下使用微波磁场对核自旋组合进行连贯的操纵。我们表明,相对于NV自然量化轴,采用具有适度振幅($ \ $ \ $ 0.01 t)的外轴磁场足以倾斜电子旋转方向,并使用NV中心的氮核启用有效的旋转交换。然后,我们可以证明对电子核自旋交换过渡,相干种群捕获和核自旋团的极化的快速兔振荡。将许多NV中心的电子旋转耦合到其内在核方面,就可控旋转的数量提供了完整的可扩展性,并提供了转导前景。特别是,该技术可应用于微波光子的长寿命存储,并将核自旋与分辨的边带状态中的机械振荡器耦合。
We use nominally forbidden electron-nuclear spin transitions in nitrogen-vacancy (NV) centers in diamond to demonstrate coherent manipulation of a nuclear spin ensemble using microwave fields at room temperature. We show that employing an off-axis magnetic field with a modest amplitude($\approx$ 0.01 T) at an angle with respect to the NV natural quantization axes is enough to tilt the direction of the electronic spins, and enable efficient spin exchange with the nitrogen nuclei of the NV center. We could then demonstrate fast Rabi oscillations on electron-nuclear spin exchanging transitions, coherent population trapping and polarization of nuclear spin ensembles in the microwave regime. Coupling many electronic spins of NV centers to their intrinsic nuclei offers full scalability with respect to the number of controllable spins and provides prospects for transduction. In particular, the technique could be applied to long-lived storage of microwave photons and to the coupling of nuclear spins to mechanical oscillators in the resolved sideband regime.