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Experimental Determination of Spectral Transmittance of Porous Cerium Dioxide in the Range 900-1700 nm

机译:多孔二氧化铈在900-1700 nm范围内光谱透射率的实验测定

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摘要

Overall transmittance of porous cerium dioxide is measured in the spectral range of 900-1700 nm using dispersive spectroscopy. Dense and porous samples of cerium dioxide with average porosities of 0.08 and 0.72, respectively, are investigated. The transmittance of both sample types increases with decreasing thickness, and this trend is more pronounced for the dense samples. The on-average spectrally increasing transmittance of the dense samples is attributed to the decreasing absorption by bulk cerium dioxide with radiation wavelength. The transmittance of the porous samples, on the other hand, remains approximately constant over the spectrum. Porous samples attenuate radiation stronger than the dense samples at any wavelength in the considered range, and it is hypothesized that this effect is due to more intense scattering. Sharp local variations of the transmittance are observed for both sample types.
机译:使用分散光谱法在900-1700 nm的光谱范围内测量了多孔二氧化铈的总透射率。研究了平均孔隙率分别为0.08和0.72的二氧化铈的致密样品和多孔样品。两种样品类型的透射率都随着厚度的减小而增加,并且这种趋势在致密样品中更为明显。致密样品的平均光谱透射率增加归因于散装二氧化铈对辐射波长的吸收降低。另一方面,多孔样品的透射率在光谱上保持大致恒定。在所考虑的范围内的任何波长下,多孔样品的辐射衰减强度都比密集样品的辐射强度大,据推测,这种影响是由于更强烈的散射所致。两种样品类型均观察到透射率的急剧局部变化。

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