The Research on Non-linearity and Sensitivity of Current Sensor Based on Diamond Magnetometer

Long Zhao, Jia Xie, Zhenshan Liu, Hui Liu, Fenglong Sun
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引用次数: 1

Abstract

Nitrogen-vacancy (NV) center is a kind of point defect, which consist of a nitrogen atom and a vacancy distributed in diamond. Under the irradiation of 532nm laser, the NV center can emit fluorescence with 640nm∼800nm wavelength, while the intensity of fluorescence could be influenced by microwave and magnetic field. This feature can be used to realize high-precision magnetic field measurement. The NV center current sensor has the characteristics of ultrahigh precision and long-term stability, which leads to a great application potential such as current transformers. In the test, it was found that the NV center current sensor will have a non-linear effect under high current, resulting in a limitation in current sensing application. This paper simulates the non-linear response of NV current sensor, and proposes some improvement ways based on the simulation results.
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基于金刚石磁强计的电流传感器非线性及灵敏度研究
氮空位中心(NV)是一种由氮原子和空位组成的点缺陷,分布在金刚石中。在532nm激光照射下,NV中心可发出640nm ~ 800nm波长的荧光,荧光强度受微波和磁场影响。利用该特性可以实现高精度的磁场测量。NV中心电流传感器具有超高精度和长期稳定的特点,在电流互感器等领域具有很大的应用潜力。在测试中发现,NV中心电流传感器在大电流下会产生非线性效应,从而限制了电流传感的应用。本文对NV电流传感器的非线性响应进行了仿真,并根据仿真结果提出了改进方法。
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