论文标题

基于磁场抗旋转传感器的纳米阶级电剂法

Nanoscale electrometry based on a magnetic-field-resistant spin sensor

论文作者

Li, Rui, Kong, Fei, Zhao, Pengju, Cheng, Zhi, Qin, Zhuoyang, Wang, Mengqi, Zhang, Qi, Wang, Pengfei, Wang, Ya, Shi, Fazhan, Du, Jiangfeng

论文摘要

氮呈现(NV)中心是用于电场传感的潜在原子尺度旋转传感器。但是,其对磁场的自然敏感性阻碍了电场的有效检测。在这里,我们提出了一种利用连续动态解耦(CDD)技术的强大电视法。在CDD期间,NV中心在穿着状态的空间中演变,该空间具有对磁场的抵抗力,但对电场仍然敏感。例如,我们使用这种方法将钻石表面附近复杂的电磁环境的电噪声隔离,通过测量着装状态之间的变形速率。通过用不同的覆盖液体减少表面电噪声,我们观察到液体的脱位率与介电介电常数之间的明确关系,这可以对钻石表面附近的电噪声模型进行定量研究。

The nitrogen-vacancy (NV) center is a potential atomic-scale spin sensor for electric field sensing. However, its natural susceptibility to the magnetic field hinders effective detection of the electric field. Here we propose a robust electrometric method utilizing continuous dynamic decoupling (CDD) technique. During the CDD period, the NV center evolves in a dressed-state space, where the sensor is resistant to magnetic fields but remains sensitive to electric fields. As an example, we use this method to isolate the electric noise from a complex electro-magnetical environment near diamond surface via measuring the dephasing rate between dressed states. By reducing the surface electric noise with different covered liquids, we observe an unambiguous relation between the dephasing rate and the dielectric permittivity of the liquid, which enables a quantitative investigation of electric noise model near diamond surface.

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