4.4 Article

5 nm-scale surface evenness movement measurement method based on the electron spin in diamond

期刊

LASER PHYSICS LETTERS
卷 18, 期 1, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1612-202X/abcf26

关键词

NV center; nanoscale detection; magnetic levitation

资金

  1. National Key Research and Development Program of China [2017YFB0503100]
  2. National Natural Science Foundation of China [51805493, 51922009, 51727808, 51775522]
  3. Applied Basic Research Program in Shanxi Province [201901D111011]
  4. Key Research and Development Program in Shanxi Province [201803D121067]
  5. Key Laboratory for Information Detection and Processing of Shanxi Province [ISPT2020-2]
  6. Key Laboratory of Shanxi Province [201905D121001]
  7. Shanxi `1331 Project' Key Subjects Construction

向作者/读者索取更多资源

A novel method using nitrogen-vacancy (NV) centers in diamond as sensors to detect the motion of magnetic levitation structure has been proposed, enabling high-precision measurement. This approach shows high sensitivity and resolution, allowing real-time recording of dynamic movement of the magnetic levitation system.
The motion of a magnetic levitation structure can lead to low accuracy for magnetically suspended control moment gyros (MSCMG), artificial heart pumps or high precision stable platforms. Measuring this motion is important in orbital navigation and precision measurement technologies, but current methods are unable to measure it with high accuracy under a strong magnetic field around the magnetic levitation structure. Here, we present a method in which nitrogen-vacancy (NV) centers in diamond have been used as a sensor to detect the movement of the magnetic levitation structure. The NV quantum sensors probe the electric field around the suspension magnet induced by the magnet fluctuations. Based on the high sensitivity of 0.3 nT (root Hz)(-1), the resolution of motion was about 5 nm. Also, the dynamic movement of the magnetic levitation system has been recorded in real-time with a potential resolution of similar to pm as the magnetic field sensitivity of NV center was improved to similar to pT. Our method offers a novel route to measure and feedback control the magnetic levitation system for MSCMGs in satellite attitude or for magnetic pumps in artificial heart applications.

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