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Revealing Structural Organization with Liquid Crystal-based Spectral Imaging Polarimetry

机译:利用基于液晶的光谱成像偏振测量技术揭示结构组织

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摘要

Structural organization refers to the particular ordering of scatterers. Probing structural organization by imaging polarized spectral scatter provides insight into the composition of a medium, and can aid in remote sensing, the identification of tissue pathologies, and material characterization and differentiation. The vector nature of polarized light enables it to interact with optical anisotropies within a medium, while the spectral aspect of polarization is sensitive to small-scale structure. However, many polarization studies have limitations, as they provide qualitative image analysis, incomplete anisotropy information, or both. The ability to image the effects of anisotropy and small-scale structure at multiple wavelengths is key for parameterizing structural organization. The Stokes/Mueller formalism is a framework that quantifies a mediumu27s complete spectral polarization response, and allows for the parameterization of structural organization. Additionally, advances in liquid crystal (LC) technology have resulted in new polarimetric devices. These computer-controlled devices impart spectral polarization effects on the millisecond timescale with no mechanically moving hardware, providing the ability for making rapid polarimetric measurements. This dissertation describes a methodology for revealing structural organization by exploiting the Stokes/Mueller formalism and by utilizing measurements from a spectral imaging polarimeter constructed from variable retardance LC devices, such as liquid crystal variable retarders (LCVRs) and a liquid crystal tunable filter (LCTF). The methodology includes developing the system, the Stokes/Mueller model, and all of the procedures, calibrations, and data interpretation. Developing the system also consists of component and system calibration, a system sensitivity and performance analysis, and finally test measurements for system validation. The final validation measurement is made on a mineral sample for inferring structural organization.
机译:结构组织是指散射体的特定顺序。通过对极化光谱散射进行成像来探测结构组织,可以洞悉介质的成分,并可以帮助遥感,组织病理学鉴定以及材料表征和区分。偏振光的矢量性质使其能够与介质中的光学各向异性相互作用,而偏振的光谱方面对小规模结构敏感。但是,许多极化研究都有局限性,因为它们提供了定性的图像分析,不完整的各向异性信息,或两者兼而有之。在多个波长下成像各向异性和小规模结构的影响的能力是参数化结构组织的关键。 Stokes / Mueller形式主义是一个框架,可以量化介质的完整光谱极化响应,并允许对结构组织进行参数化。另外,液晶(LC)技术的进步导致了新的极化设备。这些计算机控制的设备无需机械移动的硬件就可以在毫秒级的时间范围内实现光谱偏振效果,从而提供了快速偏振测量的能力。这篇论文描述了一种利用斯托克斯/穆勒形式主义并利用由可变延迟LC装置(例如液晶可变延迟器(LCVR)和液晶可调滤光片(LCTF))构成的光谱成像旋光仪的测量来揭示结构组织的方法。 。该方法论包括开发系统,Stokes / Mueller模型以及所有程序,校准和数据解释。开发系统还包括组件和系统校准,系统灵敏度和性能分析以及最后的测试测量以进行系统验证。最终验证测量是在矿物样品上进行的,以推断结构组织。

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    Gladish James Campbell;

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  • 年度 2015
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