微波食品加热
磁强计
钻石
量子传感器
灵敏度(控制系统)
光电子学
物理
材料科学
氮空位中心
磁场
电子工程
工程类
量子
量子技术
量子力学
开放量子系统
复合材料
作者
Zhecheng Wang,Fei Kong,Pengju Zhao,Zhehua Huang,Pei Yu,Ya Wang,Fazhan Shi,Jiangfeng Du
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2022-08-10
卷期号:8 (32)
被引量:51
标识
DOI:10.1126/sciadv.abq8158
摘要
Developing robust microwave-field sensors is both fundamentally and practically important with a wide range of applications from astronomy to communication engineering. The nitrogen vacancy (NV) center in diamond is an attractive candidate for such purpose because of its magnetometric sensitivity, stability, and compatibility with ambient conditions. However, the existing NV center–based magnetometers have limited sensitivity in the microwave band. Here, we present a continuous heterodyne detection scheme that can enhance the sensor’s response to weak microwaves, even in the absence of spin controls. Experimentally, we achieve a sensitivity of 8.9 pT Hz −1/2 for microwaves of 2.9 GHz by simultaneously using an ensemble of n NV ~ 2.8 × 10 13 NV centers within a sensor volume of 4 × 10 −2 mm 3 . Besides, we also achieve 1/ t scaling of frequency resolution up to measurement time t of 10,000 s. Our scheme removes control pulses and thus will greatly benefit practical applications of diamond-based microwave sensors.
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