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Concurrent polarization IR analysis to determine the 3D angles and the order parameter for molecular orientation imaging

机译:并发偏振红外分析以确定分子取向成像的3D角度和阶数参数

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摘要

A non-tomographic analysis method is proposed to determine the 3D angles and the order parameter of molecular orientation using polarization-dependent infrared (IR) spectroscopy. Conventional polarization-based imaging approaches provide only 2D-projected orientational information of single vibrational modes. The newly proposed method concurrently analyses polarization angle-dependent absorptance of two non-parallel transition dipole moments. The relative phase angle and the maximum-to-minimum ratios observed from the two polarization profiles are usesd to calculate the 3D angles of the mean molecular orientation and the order parameter of the orientational distribution. Usage of those relative observables as intermediate input parameters makes the analysis results robust against variations in concentration, thickness, absorption peak, and absorption cross-section, which can occur in typical imaging conditions. This analysis is based on a single-step, non-iterative calculation that does not require any analytical model function of an orientational distribution function. This concurrent polarization analysis method is demonstrated using two simulation data examples, followed by associated error propagation analysis and discussion on the effect of absorption strength. Application of this robust spectral analysis method to polarization IR microscopy will provide a full molecular orientation image without tilting that tomographies require.
机译:提出了一种非断层分析方法,该方法使用偏振相关的红外(IR)光谱法确定分子取向的3D角度和顺序参数。传统的基于偏振的成像方法仅提供单个振动模式的2D投影方向信息。新提出的方法同时分析了两个非平行跃迁偶极矩的极化角相关吸收率。从两个偏振分布图中观察到的相对相角和最大/最小比率用于计算平均分子取向的3D角和取向分布的阶数参数。这些相对可观测值的使用作为中间输入参数,使分析结果对典型的成像条件下可能发生的浓度,厚度,吸收峰和吸收截面变化具有鲁棒性。该分析基于单步非迭代计算,该计算不需要定向分布函数的任何分析模型函数。使用两个模拟数据示例演示了这种并行极化分析方法,然后进行了相关的误差传播分析以及对吸收强度影响的讨论。这种强大的光谱分析方法在偏振红外显微镜上的应用将提供完整的分子取向图像,而无需断层扫描所需的倾斜。

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