磁强计
量子传感器
灵敏度(控制系统)
艾伦方差
磁场
动态范围
物理
钻石
噪音(视频)
光学
材料科学
量子
计算机科学
电子工程
标准差
工程类
量子模拟器
量子计算机
数学
量子力学
复合材料
统计
图像(数学)
人工智能
作者
Himanshu Kumar,Dasika Shishir,Maheshwar Mangat,Siddharth Tallur,Kasturi Saha
摘要
Nitrogen vacancy (NV) centers in diamonds have been explored for a wide range of sensing applications in the last decade due to their unique quantum properties. In this work, we report a compact and portable magnetometer with an ensemble of NV centers, which we call the Quantum MagPI (Quantum Magnetometer with Proportional Integral control). Our fully integrated compact sensor assembly and control electronics fit inside a 10 × 10 × 7 cm3 box and a 30 × 25 × 5 cm3 rack-mountable box, respectively. We achieve a bandwidth normalized sensitivity of ∼10 nT/Hz. Using closed-loop feedback for locking to the resonance frequency, we extend the linear dynamic range to 200 μT (20× improvement compared to the intrinsic dynamic range) without compromising the sensitivity. We report a detailed performance analysis of the magnetometer through measurements of noise spectra, Allan deviation, and tracking of nT-level magnetic fields in real-time. In addition, we demonstrate the utility of such a magnetometer by real-time tracking of the movement of an elevator car and door opening events by measuring the projection of the magnetic field along one of the NV-axes under ambient temperature and humidity conditions.
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