High-sensitivity optical-fiber magnetic sensor based on diamond and magnetic flux concentrators

J Shao, Y Luo, J Chen, H Huang, GS Liu, L Chen… - Optics …, 2023 - opg.optica.org
Magnetic field detection exploiting nitrogen-vacancy (NV) centers in diamond has gained
increasing attention and development in recent years. Combining diamond NV centers to …

[HTML][HTML] Optically detected magnetic resonance study of thermal effects due to absorbing environment around nitrogen-vacancy-nanodiamond powders

M Jani, Z Orzechowska, M Mrózek… - Journal of Applied …, 2024 - pubs.aip.org
We implanted Fe+ ions in nanodiamond (ND) powder containing negatively charged
nitrogen-vacancy (NV−) centers and studied their Raman spectra and optically detected …

Closed-Loop Diamond Quantum Sensor for Large Range and High Precision Current Measurement

Q Liu, F Xie, X Peng, Y Zhang, N Wang… - IEEE Sensors …, 2024 - ieeexplore.ieee.org
Magnetic field sensors based on quantum effects have shown superior performance in
sensitivity, wherein the nitrogen-vacancy (NV) center in diamond has emerged as a …

[PDF][PDF] 基于金刚石氮-空位色心的光纤量子传感

刘勇, 林豪彬, 张少春, 董杨, 陈向东… - Laser & Optoelectronics …, 2023 - researching.cn
摘要金刚石中的氮-空位(NV) 色心在室温下具有稳定的荧光发射, 超长的电子自旋相干时间以及
许多优良的光学性质, 可以对电磁场, 温度进行高灵敏度表征. 光纤传感技术近几年来发展迅速 …

Strong Thermal Effects in Optically Detected Magnetic Resonances Due to Absorbing Environment Around Nv-Nanodiamond Powders

M Jani, Z Orzechowska, M Mrózek… - Available at SSRN … - papers.ssrn.com
We implanted Fe+ ions in nanodiamond (ND) powder containing negatively charged
nitrogen-vacancy (NV−) centers and studied their Raman spectra and optically detected …