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首页> 外文期刊>Optics and Spectroscopy >Nonlinear Magnetooptical Resonance in Rb-87 Vapor: The Influence of Stray Magnetic Fields and Excitation Radiation Intensity on the Basic Characteristics of the Effect in Cells with Antirelaxation Coating
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Nonlinear Magnetooptical Resonance in Rb-87 Vapor: The Influence of Stray Magnetic Fields and Excitation Radiation Intensity on the Basic Characteristics of the Effect in Cells with Antirelaxation Coating

机译:RB-87蒸气中的非线性磁光共振:杂散磁场和激发辐射强度对具有抗反建涂层效应作用的基本特征的影响

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摘要

The nonlinear Hanle effect is generally considered in the modern literature as a particular case of coherent population trapping (CPT) at degenerate Zeeman sublevels of the ground atomic state. The shape, amplitude, and sign of observed resonances and their dependence on the excitation parameters and observation geometry were investigated theoretically and experimentally in many studies because of the wide range of application of this effect. The sensitivity of Hanle resonances to the experimental conditions increases significantly in cells with antirelaxation coating, because the atomic ensemble retains its coherence after a large number of collisions with the cell walls. In this paper, the main attention is paid to the joint influence of the excitation radiation intensity and spurious magnetic fields on CPT resonances observed in fluorescence. The theoretical description is based on the numerical solution of an algebraic system of equations for density matrix in the formalism of irreducible tensor operators. The parameters relating different polarization moments in each equation are visualized using the modified sparse matrix of the system. It is established by numerical simulation that the shape, width, amplitude, and sign of nonlinear magnetooptical resonances change nonmonotonically with a change in the parameters of the excitation radiation and atomic system. The presented theoretical results are in good agreement with the experimental data obtained under various conditions.
机译:非线性Hanle效应通常在现​​代文献中被认为是在地原子态的堕落栖息地捕获(CPT)的特定情况。观察到的共振的形状,幅度和迹象及其对激发参数和观察几何形状的依赖性在理论上和实验上在许多研究中进行了实验,因为这种效果的应用范围广泛。具有抗反动涂层的细胞中Hanle共度对实验条件的敏感性显着增加,因为原子合奏在与细胞壁的大量碰撞之后保持其相干性。本文中,主要注意力得到荧光中观察到的CPT共振上的激发辐射强度和杂散磁场的关节影响。理论描述是基于IRRAFIBIBE张量算子形式主义中的密度矩阵等方程的代数系统的数值解。使用系统的修改稀疏矩阵可视化在每个等式中相关不同偏振矩的参数。通过数值模拟建立,非线性磁光共振的形状,宽度,幅度和符号随着激发辐射和原子系统的参数的变化而变化。呈现的理论结果与在各种条件下获得的实验数据吻合良好。

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