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Monitoring spin coherence of single nitrogen-vacancy centers in nanodiamonds during pH changes in aqueous buffer solutions

机译:在缓冲溶液的pH值变化期间监测纳米金刚石中单个氮空位中心的自旋相干性

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We report on the sensing stability of quantum nanosensors in aqueous buffer solutions for the two detection schemes of quantum decoherence spectroscopy and nanoscale thermometry. The electron spin properties of single nitrogen-vacancy (NV) centers in 25 nm-sized nanodiamonds have been characterized by observing individual nanodiamonds during a continuous pH change from 4 to 11. We have determined the stability of the NV quantum sensors during the pH change as the fluctuations of ±12% and ±0.2 MHz for the spin coherence time ( T _(2) ) and the resonance frequency ( ω _(0) ) of their mean values, which are comparable to the instrument error of the measurement system. We discuss the importance of characterizing the sensing stability during the pH change and how the present observation affects the measurement scheme of nanodiamond-based NV quantum sensing.
机译:我们报告量子退相干光谱和纳米级测温的两种检测方案在缓冲溶液中的量子纳米传感器的感测稳定性。在25纳米大小的纳米金刚石中,单个氮原子空位(NV)中心的电子自旋特性已通过在连续pH值从4变为11期间观察单个纳米金刚石来表征。我们确定了NV量子传感器在pH值变化期间的稳定性自旋相干时间(T _(2))和其平均值的共振频率(ω_(0))的±12%和±0.2 MHz的波动,与测量系统的仪器误差相当。我们讨论表征pH值变化期间传感稳定性的重要性,以及当前的观察结果如何影响基于纳米金刚石的NV量子传感的测量方案。

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