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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Polarized light-scattering profile-advanced characterization of nonspherical particles with scanning flow cytometry
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Polarized light-scattering profile-advanced characterization of nonspherical particles with scanning flow cytometry

机译:扫描流式细胞仪对非球形颗粒的偏振光散射轮廓进行进一步表征

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摘要

We instrumentally, theoretically, and experimentally demonstrate a new approach for characterization of nonspherical individual particles from light scattering. Unlike the original optical scheme of the scanning flow cytometer that measures an angle-resolved scattering corresponding in general to S11 element of the light-scattering matrix, the modernized instrument allows us to measure the polarized light-scattering profile of individual particles simultaneously. Theoretically, the polarized profile is expressed by the combination of a few light-scattering matrix elements. This approach supports us with additional independent data to characterize a particle with a complex shape and an internal structure. Applicability of the new method was demonstrated from analysis of polymer bispheres. The bisphere characteristics, sizes, and refractive indices of each sphere composing the bisphere were successfully retrieved from the solution of the inverse light-scattering problem. The solution provides determination of the Eulerian angles, which describe the orientation of the bispheres relative to the direction of the incident laser beam and detecting polarizer of the optical system. Both the ordinary and polarized profiles show a perfect agreement with T-matrix simulation resulting to 50-nm precision for sizing of bispheres.
机译:我们在仪器上,理论上和实验上演示了一种从光散射表征非球形单个粒子的新方法。与扫描流式细胞仪的原始光学方案不同,该光学方案测量的角度分辨散射通常对应于光散射矩阵的S11元素,现代化的仪器使我们能够同时测量单个粒子的偏振光散射轮廓。从理论上讲,偏振轮廓是由一些光散射矩阵元素的组合表示的。这种方法为我们提供了额外的独立数据,以表征具有复杂形状和内部结构的粒子。通过分析聚合物双球体证明了该新方法的适用性。从反光散射问题的解决方案中,成功地检索了组成双球的每个球的双球特性,大小和折射率。该解决方案可以确定欧拉角,该角度描述了双球相对于入射激光束方向的方向,并检测了光学系统的偏振器。普通轮廓和极化轮廓都显示出与T矩阵模拟的完美一致性,从而为双球的尺寸确定了50 nm的精度。

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