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用于金刚石中氮空位中心的圆极化微波天线。

Circularly polarized microwave antenna for nitrogen vacancy centers in diamond.

作者信息

Yaroshenko Vitaly, Soshenko Vladimir, Vorobyov Vadim, Bolshedvorskii Stepan, Nenasheva Elizaveta, Kotel'nikov Igor, Akimov Alexey, Kapitanova Polina

机构信息

Department of Physics and Engineering, ITMO University, 197101 Saint Petersburg, Russia.

P. N. Lebedev Physical Institute, 119991 Moscow, Russia.

出版信息

Rev Sci Instrum. 2020 Mar 1;91(3):035003. doi: 10.1063/1.5129863.

Abstract

The sensing applications of nitrogen-vacancy color centers in a diamond require an efficient manipulation of the color center ground state over the whole volume of an ensemble. Thus, it is necessary to produce strong uniform magnetic fields of a well-defined circular polarization at microwave frequencies. In this paper, we develop a circularly polarized microwave antenna based on the excitation of hybrid electromagnetic modes in a high-permittivity dielectric resonator. The influence of the geometrical parameters of the antenna on the reflection coefficient and magnetic field magnitude is studied numerically and discussed. The Rabi frequencies and their inhomogeneity over the volume of a commercially available diamond sample are calculated. With respect to the numerical predictions, a Rabi frequency as high as 34 MHz with an inhomogeneity of 4% over a 1.2 mm × ∅2.5 mm (5.9 mm in volume) diamond sample can be achieved for 10 W of input power at room temperature. The antenna prototype is fabricated, and experimental investigations of its characteristics are performed in microwave and optical frequency domains. The circular polarization of the microwave magnetic field with an ellipticity of 0.94 is demonstrated experimentally. The Rabi oscillation frequency and its inhomogeneity are measured, and the results demonstrate a good agreement with the numerically predicted results.

摘要

金刚石中氮空位色心的传感应用需要在整个集合体体积内对色心基态进行有效操控。因此,有必要在微波频率下产生具有明确圆极化的强均匀磁场。在本文中,我们基于高介电常数介质谐振器中混合电磁模式的激发,开发了一种圆极化微波天线。通过数值研究并讨论了天线几何参数对反射系数和磁场强度的影响。计算了市售金刚石样品体积内的拉比频率及其不均匀性。根据数值预测,在室温下输入功率为10 W时,对于一个1.2 mm×∅2.5 mm(体积为5.9 mm³)的金刚石样品,可实现高达34 MHz的拉比频率,且不均匀性为4%。制作了天线原型,并在微波和光频域对其特性进行了实验研究。实验证明了椭圆率为0.94的微波磁场的圆极化。测量了拉比振荡频率及其不均匀性,结果与数值预测结果吻合良好。

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