English

Optimal optical polarization of nitrogen-vacancy center with arbitrary waveform pulse

Applied Physics 2020-10-05 v1 Quantum Physics

Abstract

The current work proposes a method for pulsed-light polarization of nitrogen-vacancy (NV) center electron spin. To evaluate the influence of pulsed spin polarization, we establish a polarization evaluation index based on polarizability and polarization time. Master equation model are utilized to theoretically calculate the spin polarization dynamics under light excitation and the optimal polarization conditions for the conventional methods are obtained. A novel pulsed-light polarization method is proposed by changing the optical pumping rate in the master equation from a fixed value to a time variable and an optimal waveform for proposed method is demonstrated through the variational method, which can simultaneously achieve high polarizability and requires a short polarization time. Hence, the polarization evaluation index is improved by ~10%. Moreover, the proposed method is verified by a pulsed-laser experimental system based on an arbitrary waveform generator. The current report shall expand the application horizon of NV center based quantum sensing.

Keywords

Cite

@article{arxiv.2010.00954,
  title  = {Optimal optical polarization of nitrogen-vacancy center with arbitrary waveform pulse},
  author = {Zhang Jixing and Liu Tianzheng and Xu Lixia and Bian Guodong and Fan Pengcheng and Li Mingxin and Zhang Ning and Yuan Heng},
  journal= {arXiv preprint arXiv:2010.00954},
  year   = {2020}
}
R2 v1 2026-06-23T18:58:02.473Z