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Revealing molecular structure and orientation with Stokes vector resolved second harmonic generation microscopy

机译:利用Stokes矢量解析二次谐波生成显微镜揭示分子结构和取向

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We report on measurements and characterization of polarization properties of Second Harmonic (SH) signals using a four-channel photon counting based Stokes polarimeter. In this way, the critical polarization parameters can be obtained concurrently without the need of repeated image acquisition. The critical polarization parameters, including the degree of polarization (DOP), the degree of linear polarization (DOLP), and the degree of circular polarization (DOCP), are extracted from the reconstructed Stokes vector based SH images in a pixel-by-pixel manner. The measurements are further extended by varying the polarization states of the incident light and recording the resulting Stokes parameters of the SH signal. In turn this allows the molecular structure and orientation of the samples to be determined. Use of Stokes polarimetry is critical in determination of the full polarization state of light, and enables discrimination of material properties not possible with conventional crossed-polarized detection schemes. The combination of SHG microscopy and Stokes polarimeter hence makes a powerful tool to investigate the structural order of targeted specimens.
机译:我们报告使用基于四通道光子计数的斯托克斯偏振计测量和表征第二谐波(SH)信号的偏振特性。这样,可以同时获得临界偏振参数,而无需重复获取图像。从重构的基于Stokes向量的SH图像中逐像素提取临界偏振参数,包括偏振度(DOP),线性偏振度(DOLP)和圆偏振度(DOCP)。方式。通过改变入射光的偏振态并记录SH信号的Stokes参数,可以进一步扩展测量范围。反过来,这可以确定样品的分子结构和方向。斯托克斯偏振法的使用对于确定光的全偏振态至关重要,并且可以区分传统的交叉偏振检测方案无法实现的材料性能。因此,SHG显微镜和Stokes旋光仪的组合成为研究目标标本结构顺序的有力工具。

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