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Combining spectroscopic ellipsometry with transmission spectroscopy to derive accurate optical constants for organic materials

机译:将光谱椭圆形与透射光谱相结合,从而为有机材料提供精确的光学常数

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A method for deriving the optical constants of organic powdered materials in the mid-infrared spectral range is introduced using both variable angle spectroscopic ellipsometry and transmission spectroscopy. The approach uses pressed pellets of the powder and is applied to organic solids, which have both strong and weak infrared absorption features. Many powders have significant voids and do not press into smooth, homogenous pellets. To account for pellet non-idealities and to accurately measure both n and k, three different forms of pellets were pressed and measured: A pure analyte pellet, a mixed analyte/KBr pellet with a large analyte percentage, and a KBr transmission pellet with only a small analyte percentage. Using all three pellets in a multi-sample analysis involving both ellipsometric and transmission data, the complex refractive index (n/k) values can be derived for many organic compounds. This method is illustrated to calculate the optical constants for anhydrous lactose from 6000-400 cm~(-1). The transmission measurements improve the spectral fitting of weak absorption features, and the multi-sample analysis enables a better determination of the significant void space that is present in the pure pellet, leading to lower values for both n and k if not properly accounted for in the multi-oscillator model used to fit the ellipsometric data.
机译:使用可变角度光谱椭偏针和透射光谱引入用于在中红外光谱范围内导出中红外光谱范围中的有机粉末材料的光学常数的方法。该方法使用粉末的压制粒料并施加到有机固体上,具有强大和红外吸收特征。许多粉末具有显着的空隙,不要压入光滑,均匀的颗粒。为了考虑颗粒非理想并准确测量N和K,压制并测量三种不同形式的粒料:纯分析物颗粒,具有大分析物百分比的混合分析物/ kBr颗粒,仅具有KBr透射颗粒小分析物百分比。在涉及椭圆测量和传输数据的多样本分析中使用所有三个粒料,可以为许多有机化合物衍生复折射率(N / K)值。说明该方法以计算6000-400cm〜(-1)的无水乳糖的光学常数。传输测量改善了弱吸收特征的光谱拟合,多样本分析能够更好地确定纯颗粒中存在的显着的空隙空间,导致N和K的值较低,如果没有适当地占用用于适合椭圆数据的多振荡器模型。

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