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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Relationships between optical rotation and circular dichroism and elements of the Mueller matrix for natural and artificial chiral materials
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Relationships between optical rotation and circular dichroism and elements of the Mueller matrix for natural and artificial chiral materials

机译:天然和人工手性材料的旋光性与圆二色性和穆勒矩阵元素之间的关系

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摘要

Detection, identification, and characterization of natural and artificial chiral materials have found numerous applications in biochemistry, chemistry, drugs, medicine, and engineering. With the extensive use of optical polarimetric scatterometry, the relationships between the parameters related to optical activity (optical rotation and circular dichroism) and the Mueller matrix elements (which totally characterize scattered light) have been derived when the host medium for the chiral material is dissipative and nondissipative. It is shown that for the general case when optimum excitation is accounted for in the analysis, the relationship is given in terms of a complex pairing of specific quasi-off-diagonal elements of the Mueller matrix. This work provides a road map for experimentalists to determine the optimum excitation (angles of incidence and scatter), wavelength, mode of operation (reflection or transmission), and the specific Muller matrix elements that need to be measured. (c) 2008 Optical Society of America.
机译:天然和人工手性材料的检测,鉴定和表征已在生物化学,化学,药物,医学和工程领域获得了众多应用。随着光学极化散射法的广泛应用,当手性材料的主体介质耗散时,就可以得出与光学活性相关的参数(旋光和圆二色性)与Mueller矩阵元素(完全表征散射光)之间的关系。且无耗散。结果表明,对于在分析中考虑最佳激励的一般情况,该关系是根据Mueller矩阵的特定准斜对角元素的复杂配对给出的。这项工作为实验人员提供了确定最佳激发(入射角和散射角),波长,工作模式(反射或透射)和需要测量的特定穆勒矩阵元素的路线图。 (c)2008年美国眼镜学会。

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