NV¯ center emulation in an external magnetic field

A.V. Kozorez, E. Lipatov
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Abstract

The work is devoted to emulating the correlation of a projection of magnetic field vector on axes of nitrogen-vacancy center in diamond lattice with frequencies of optically detected magnetic resonance (ODMR). The projection of the magnetic field on the axes, which reflect the bonds of the carbon atom vacancy with the neighboring carbon atoms and the nitrogen atom, is calculated in this work. The paper highlights the algorithmic representation of the above calculations by software. The dependence of the optically detected magnetic resonance on the direction and magnitude of the magnetic induction vector is demonstrated. In total, there are 4 bonds between the vacancy and neighboring atoms located at an angle of 109.5° relative to each other. Having the magnitude of the ODMR signal, it is possible to reconstruct the vector of the external magnetic field, taking into account its projection angle on the bonds with the vacancy.
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外磁场中的NV¯中心仿真
本文研究了磁场矢量在金刚石晶格中氮空位中心轴上的投影与光探测磁共振频率的关系。磁场在轴上的投影,反映了碳原子空位与邻近碳原子和氮原子的键。本文重点介绍了上述计算的软件算法表示。证明了光学检测到的磁共振与磁感应矢量的方向和大小的关系。在空位和相邻原子之间共有4个键,它们之间的相对角度为109.5°。有了ODMR信号的大小,考虑到它在带空位的键上的投影角度,就有可能重建外磁场的矢量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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