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Evaluation method for Raman depolarization measurements including geometrical effects and polarization aberrations

机译:包括几何效应和偏振像差的拉曼去极化测量的评估方法

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In this article, we address the notoriously difficult problem to quantitatively link measured Raman depolarization values to theoretical polarizability tensor quantities, since quantum calculations do not incorporate experimental parameters. For this, we introduce a numerical model to calculate, for realistic experimental configurations, effective Raman line strength functions, Φ, which find their way into depolarization ratios, ρ. The model is based on interlinked integrations over the angles in the light collection path and a finite Raman source volume along the excitation laser beam. The model deals also with the conditional aperture parameters, associated with more than one optical component in the light collection path. Finally, we also can take into account polarization aberrations introduced by the sample cell windows. The procedure was fully tested for Raman depolarization spectra of selected hydrogen isotopologues. Distinct aspects affecting Raman depolarization data were validated, namely: (1) excitation polarization impurities; (2) extended Raman excitation volumes; (3) Raman light collection over finite solid angles; and (4) polarization aberrations introduced by optics in the light collection path. The correction of the experimental measurement data for the aforementioned effects resulted in depolarization ratios for the Q1(J) Raman lines of H_2 and T_2, which mostly differed by less than 5% from those obtained by quantum-calculations.
机译:在本文中,我们解决了将量化的拉曼去极化值与理论极化率张量定量关联的难题,因为量子计算未包含实验参数。为此,我们引入了一个数值模型,以针对实际的实验配置来计算有效的拉曼线强度函数Φ,并将其转化为去极化比ρ。该模型基于光收集路径中各个角度上的互连积分以及沿激发激光束的有限拉曼光源体积。该模型还处理条件光圈参数,该参数与光收集路径中的一个以上光学组件相关。最后,我们还可以考虑由样品池窗口引入的偏振像差。该程序已针对所选氢同位素分子的拉曼去极化光谱进行了全面测试。验证了影响拉曼去极化数据的不同方面,即:(1)激发极化杂质; (2)拉曼激发体积扩大; (3)有限立体角上的拉曼光收集; (4)光学器件在集光路径中引入的偏振像差。对上述效果的实验测量数据的校正导致H_2和T_2的Q1(J)拉曼线的去极化率,与通过量子计算获得的值相比,相差不到5%。

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