Measurement of Charge State Dynamics in Nitrogen−Vacancy Centers Based on Microwave‐Pulses‐Assisted Longitudinal Relaxations Balancing of Spin Qutrit

Author:

Li Mingxin1ORCID,Yuan Heng1ORCID,Bian Guodong2ORCID,Fan Pengcheng1ORCID,Wang Sixian1,Shen Jihongbo1,Geng Jianpei3,Zhang Jixing4ORCID

Affiliation:

1. School of Instrumentation and Optoelectronic Engineering Beihang University Beijing 100191 P. R. China

2. Wigner Research Centre for Physics P.O. Box 49 Budapest H‐1525 Hungary

3. School of Physics Hefei University of Technology Hefei 230009 P. R. China

4. 3rd Institute of Physics University of Stuttgart Allmandring 13 70569 Stuttgart Germany

Abstract

AbstractThe nitrogen−vacancy (NV) center in diamond gains its versatility when negatively charged (NV) but is mediocre when neutrally charged. Particularly, the charge states of NV centers are convertible under optical pumping and during the dark intervals, whose dynamics are mixed with the NVs’ spin polarizations and relaxations, making them difficult to detect. Here, a microwave‐pulses‐assisted charge state dynamics (CSD) measurement method of NV centers in the dark time (DT) is proposed. The microwave pulses are designed to manipulate the populations of the NVs’ ground state spin triplets (qutrit) to the equilibrium state before the DT. Thus, the longitudinal relaxations of the qutrit are balanced, and pure CSD can be detected. Interestingly, in an annealed bulk diamond, not only the traditional tunneling‐induced fast exponential CSD are observed, but also a slow and long‐term recharging process, which is probably attributed to the exchanging of the electrons between NV centers and the high‐energy‐level charge traps such as vacancy clusters. Furthermore, results demonstrate a 40% increase in NVs’ contrast by properly extending the recharging DT. These results are significant for the in‐depth study of the NV centers’ CSD and can improve the sensing abilities of the NV ensemble.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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