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基于金刚石中氮空位中心的紧凑型全集成LED量子传感器

Compact and Fully Integrated LED Quantum Sensor Based on NV Centers in Diamond.

作者信息

Pogorzelski Jens, Horsthemke Ludwig, Homrighausen Jonas, Stiegekötter Dennis, Gregor Markus, Glösekötter Peter

机构信息

Department of Electrical Engineering and Computer Science, Münster University of Applied Sciences, Stegerwaldstr. 39, D-48565 Steinfurt, Germany.

Department of Engineering Physics, Münster University of Applied Sciences, Stegerwaldstr. 39, D-48565 Steinfurt, Germany.

出版信息

Sensors (Basel). 2024 Jan 24;24(3):743. doi: 10.3390/s24030743.

Abstract

Quantum magnetometry based on optically detected magnetic resonance (ODMR) of nitrogen vacancy centers in diamond nano or microcrystals is a promising technology for sensitive, integrated magnetic-field sensors. Currently, this technology is still cost-intensive and mainly found in research. Here we propose one of the smallest fully integrated quantum sensors to date based on nitrogen vacancy (NV) centers in diamond microcrystals. It is an extremely cost-effective device that integrates a pump light source, photodiode, microwave antenna, filtering and fluorescence detection. Thus, the sensor offers an all-electric interface without the need to adjust or connect optical components. A sensitivity of 28.32nT/Hz and a theoretical shot noise limited sensitivity of 2.87 nT/Hz is reached. Since only generally available parts were used, the sensor can be easily produced in a small series. The form factor of (6.9 × 3.9 × 15.9) mm3 combined with the integration level is the smallest fully integrated NV-based sensor proposed so far. With a power consumption of around 0.1W, this sensor becomes interesting for a wide range of stationary and handheld systems. This development paves the way for the wide usage of quantum magnetometers in non-laboratory environments and technical applications.

摘要

基于金刚石纳米或微晶中氮空位中心的光探测磁共振(ODMR)的量子磁力测量技术,是一种用于制造高灵敏度集成磁场传感器的很有前景的技术。目前,这项技术成本仍然很高,主要应用于研究领域。在此,我们基于金刚石微晶中的氮空位(NV)中心,提出了一种迄今为止最小的全集成量子传感器。它是一种极具成本效益的器件,集成了泵浦光源、光电二极管、微波天线、滤波和荧光检测功能。因此,该传感器提供了一个全电接口,无需调整或连接光学组件。其灵敏度达到了28.32nT/Hz,理论散粒噪声极限灵敏度为2.87 nT/Hz。由于只使用了通用部件,该传感器可以很容易地进行小批量生产。(6.9 × 3.9 × 15.9)mm3的外形尺寸与集成度相结合,是迄今为止所提出的最小的全集成NV基传感器。该传感器功耗约为0.1W,对于广泛的固定和手持系统来说都很有吸引力。这一进展为量子磁力计在非实验室环境和技术应用中的广泛使用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e3f/10856854/2eae92868946/sensors-24-00743-g006.jpg

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