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Calibration-Free Vector Magnetometry Using Nitrogen-Vacancy Center in Diamond Integrated with Optical Vortex Beam

Quantum Physics 2021-02-05 v1

Abstract

We report a new method to determine the orientation of individual nitrogen-vacancy (NV) centers in a bulk diamond and use them to realize a calibration-free vector magnetometer with nanoscale resolution. Optical vortex beam is used for optical excitation and scanning the NV center in a [111]-oriented diamond. The scanning fluorescence patterns of NV center with different orientations are completely different. Thus, the orientation information on each NV center in the lattice can be known directly without any calibration process. Further, we use three differently oriented NV centers to form a magnetometer and reconstruct the complete vector information on the magnetic field based on the optically detected magnetic resonance(ODMR) technique. Compared with previous schemes to realize vector magnetometry using an NV center, our method is much more efficient and is easily applied in other NV-based quantum sensing applications.

Keywords

Cite

@article{arxiv.2102.02418,
  title  = {Calibration-Free Vector Magnetometry Using Nitrogen-Vacancy Center in Diamond Integrated with Optical Vortex Beam},
  author = {Bing Chen and Xianfei Hou and Feifei Ge and Xiaohan Zhang and Yunlan Ji and Hongju Li and Peng Qian and Ya Wang and Nanyang Xu and Jiangfeng Du},
  journal= {arXiv preprint arXiv:2102.02418},
  year   = {2021}
}
R2 v1 2026-06-23T22:49:24.901Z