多路复用
磁场
光学
频分复用
放大器
噪音(视频)
灵敏度(控制系统)
温度测量
物理
微波食品加热
计算机科学
材料科学
光电子学
电子工程
电信
正交频分复用
图像(数学)
频道(广播)
工程类
人工智能
量子力学
CMOS芯片
作者
Hao-Bin Lin,Ce Feng,Yang Dong,Wang Jiang,Xuedong Gao,Shao-Chun Zhang,Xiang-Dong Chen,Fang‐Wen Sun
标识
DOI:10.3788/col202321.011201
摘要
Nitrogen-vacancy color centers can perform highly sensitive and spatially resolved quantum measurements of physical quantities such as magnetic field, temperature, and pressure. Meanwhile, sensing so many variables at the same time often introduces additional noise, causing a reduced accuracy. Here, a dual-microwave time-division multiplexing protocol is used in conjunction with a lock-in amplifier in order to decouple temperature from the magnetic field and vice versa. In this protocol, dual-frequency driving and frequency modulation are used to measure the magnetic and temperature field simultaneously in real time. The sensitivity of our system is about 3.4 nT/Hz and 1.3 mK/Hz, respectively. Our detection protocol not only enables multifunctional quantum sensing, but also extends more practical applications.
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