Novel Magnetic-Sensing Modalities with Nitrogen-Vacancy Centers in Diamond

量子传感器 磁强计 量子计量学 钻石 氮空位中心 磁场 连贯性(哲学赌博策略) 量子 计量学 量子技术 纳米技术 物理 材料科学 量子计算机 量子模拟器 计算机科学 光学 开放量子系统 量子力学 复合材料
作者
Huijie Zheng,Arne Wickenbrock,Georgios Chatzidrosos,Lykourgos Bougas,N. Leefer,S. Afach,Andrey Jarmola,Víctor M. Acosta,Jingyan Xu,Geoffrey Z. Iwata,T. Lenz,Zhiyin Sun,Chen Zhang,Takeshi Ohshima,Hitoshi Sumiya,Kazuo Nakamura,Junichi Isoya,Jörg Wrachtrup,Dmitry Budker
出处
期刊:IntechOpen eBooks [IntechOpen]
被引量:1
标识
DOI:10.5772/intechopen.95267
摘要

In modern-day quantum metrology, quantum sensors are widely employed to detect weak magnetic fields or nanoscale signals. Quantum devices, exploiting quantum coherence, are inevitably connected to physical constants and can achieve accuracy, repeatability, and precision approaching fundamental limits. As a result, these sensors have shown utility in a wide range of research domains spanning both science and technology. A rapidly emerging quantum sensing platform employs atomic-scale defects in crystals. In particular, magnetometry using nitrogen-vacancy (NV) color centers in diamond has garnered increasing interest. NV systems possess a combination of remarkable properties, optical addressability, long coherence times, and biocompatibility. Sensors based on NV centers excel in spatial resolution and magnetic sensitivity. These diamond-based sensors promise comparable combination of high spatial resolution and magnetic sensitivity without cryogenic operation. The above properties of NV magnetometers promise increasingly integrated quantum measurement technology, as a result, they have been extensively developed with various protocols and find use in numerous applications spanning materials characterization, nuclear magnetic resonance (NMR), condensed matter physics, paleomagnetism, neuroscience and living systems biology, and industrial vector magnetometry. In this chapter, NV centers are explored for magnetic sensing in a number of contexts. In general, we introduce novel regimes for magnetic-field probes with NV ensembles. Specifically, NV centers are developed for sensitive magnetometers for applications where microwaves (MWs) are prohibitively invasive and operations need to be carried out under zero ambient magnetic field. The primary goal of our discussion is to improve the utility of these NV center-based magnetometers.
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