纳米金刚石
量子传感器
磁强计
材料科学
钻石
光纤
磁场
纳米技术
光电子学
纤维
灵敏度(控制系统)
量子点
氮空位中心
量子
光学
量子网络
量子信息
物理
电子工程
复合材料
工程类
量子力学
作者
Yaofei Chen,Qianyu Lin,Hongda Cheng,Huanhuan Huang,Jie Shao,Ying-Ying Ye,Gui‐Shi Liu,Lei Chen,Yunhan Luo,Zhe Chen
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2022-12-01
卷期号:7 (12): 3660-3670
被引量:18
标识
DOI:10.1021/acssensors.2c00670
摘要
Owing to the unique electronic spin properties, nitrogen-vacancy (NV) centers hosted in diamond have emerged as a powerful quantum tool for detecting various physical parameters and biological species. In this work, an optical-fiber quantum probe, configured by chemically modifying nanodiamonds on the surface of a cone fiber tip, is developed. Based on the continuous-wave optically detected magnetic resonance method and lock-in amplification technique, it is found that the sensing performance of probes can be engineered by varying the nanodiamond dispersion concentration and modification duration during the chemical modification process. Combined with a pair of magnetic flux concentrators, the magnetic field detection sensitivity has reached 0.57 nT/Hz1/2@1 Hz, a new record among the fiber magnetometers based on nanodiamonds. Taking Gd3+ as the demo, the capability of probes in paramagnetic species detection is also demonstrated experimentally. Our work provides a new approach to develop NV centers as quantum probes featuring high integration, multifunction, high sensitivity, etc.
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