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Effects of vector magnetic field on electromagnetically induced transparency with lin perpendicular to lin polarization

机译:矢量磁场对林垂直于林极化的电磁诱导透明度的影响

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The effect of a vector magnetic field was studied on electromagnetically induced transparency (EIT) with linear perpendicular to linear polarization of the probe and pump beams in Rb-87 - D-2 transition with a vapor cell at room temperature. The dependence of EIT on the direction of the quantization axis and the relative orientation of the polarizations of the applied electric fields was studied experimentally. We show that from the relative strengths of sigma and pi EITs, the direction of the magnetic field can be found. Moreover, from the relative separation between sigma and pi EITs, the strength of the magnetic field can be calculated. We also demonstrate that the EIT peak amplitudes show oscillatory behavior depending upon the orientation of the laser polarization relative to the magnetic field direction. To understand the experimental observations, a theoretical study was done numerically considering all 13 Zeeman sub-levels. Apart from the numerical simulation, a toy model was also constructed to obtain an analytical response of the medium considering the velocity distribution. The dependencies of the magnetic field direction and polarization direction of the electric field were explicitly derived with the analytical model. (C) 2021 Optical Society of America
机译:在室温下,研究了矢量磁场对Rb-87-D-2跃迁中探针和泵浦光的线性垂直于线性极化的电磁感应透明(EIT)的影响。实验研究了EIT与量子化轴方向和外加电场极化方向的关系。我们表明,从sigma和pi EITs的相对强度,可以找到磁场的方向。此外,根据sigma和pi eit之间的相对间隔,可以计算磁场强度。我们还证明,EIT峰值振幅表现出振荡行为,这取决于相对于磁场方向的激光偏振方向。为了理解实验观察结果,对所有13个塞曼子能级进行了数值研究。除了数值模拟之外,还建立了一个玩具模型,以获得考虑速度分布的介质的分析响应。利用解析模型明确推导了磁场方向和电场极化方向的依赖关系。(2021)美国光学学会

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