Lee Young Jong
Opt Express. 2020 Mar 30;28(7):9158-9173. doi: 10.1364/OE.389558.
Polarization-controlled coherent Raman spectroscopy is used as a high-throughput method to characterize the anisotropic nature of a molecular system, such as the molecular orientation distribution. However, optical birefringence originating from the molecular anisotropy can cause the observed Raman spectrum to be significantly distorted, making it extremely challenging to obtain quantitative information from polarization Raman measurements. Here, the birefringence effect on the signal intensity and the spectral shape of a polarization-controlled coherent anti-Stokes Raman scattering (CARS) is theoretically described using a uniaxially symmetrical model system. Due to the complexity, the effect of phase delay in the incident lights is not considered but only that of the generated CARS signal is considered. A new analytical method is presented to eliminate the birefringence contribution from polarization-controlled CARS data by analyzing polarization intensity profiles and retrieving the resonant Raman susceptibility spectra. This method is tested with two sets of polarization-controlled CARS data simulated with various combinations of symmetries of multiple underlying Raman modes. The analysis result clearly demonstrates that the effect of birefringence can be corrected for polarization-controlled CARS data and the symmetry tensor elements of all underlying Raman modes can be quantitatively characterized.
偏振控制相干拉曼光谱法被用作一种高通量方法来表征分子系统的各向异性性质,例如分子取向分布。然而,源自分子各向异性的光学双折射会导致所观察到的拉曼光谱严重失真,使得从偏振拉曼测量中获取定量信息极具挑战性。在此,使用单轴对称模型系统从理论上描述了双折射对偏振控制相干反斯托克斯拉曼散射(CARS)信号强度和光谱形状的影响。由于其复杂性,未考虑入射光中的相位延迟效应,仅考虑了所产生的CARS信号的相位延迟效应。提出了一种新的分析方法,通过分析偏振强度分布并检索共振拉曼极化率光谱,来消除偏振控制CARS数据中的双折射贡献。该方法用两组通过多种潜在拉曼模式对称性的不同组合模拟得到的偏振控制CARS数据进行了测试。分析结果清楚地表明,双折射效应可针对偏振控制CARS数据进行校正,并且所有潜在拉曼模式的对称张量元素均可得到定量表征。