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Optically detected magnetic resonance in negatively charged nitrogen-vacancy centers in diamond under resonant optical excitation at cryogenic temperatures

机译:在低温温度下,在谐振光学激发下,在金刚石中的带负电荷的氮空位中心中的光学检测磁共振

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摘要

We study optically detected magnetic resonance (ODMR) in diamond NV- centers at cryogenic temperatures. We find that when we use resonant optical excitation at zero phonon line wavelength, turning on microwave radiation leads to an increase in fluorescence. This is different from the conventional case of nonresonant optical pumping where microwave radiation instead leads to a decrease in fluorescence. In addition, we observe a significant increase in contrast compared to the nonresonant ODMR. To explain this effect, we propose a theoretical model based on the interaction of the resonant optical radiation with different groups from the inhomogeneously broadened ensemble of NV- centers. We find that the effect is temperature dependant and can only be observed at temperatures below 35 K.
机译:我们在低温温度下研究了金刚石NV中心的光学检测到的磁共振(ODMR)。 我们发现当我们在零位线波长下使用谐振光学激发时,打开微波辐射导致荧光的增加。 这与非共度光学泵送的传统情况不同,其中微波辐射替代地导致荧光的降低。 此外,与非族裔ODMR相比,我们观察到对比度的显着增加。 为了解释这种效果,我们提出了一种基于谐振光学辐射与不同组的相互作用的理论模型,从NV-中心的不均匀扩大的整体。 我们发现效果是温度依赖性,只能在低于35 K的温度下观察到。

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