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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >New approach for the determination of aerosol refractive indices - Part II: Experimental set-up and application to amorphous silica particles
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New approach for the determination of aerosol refractive indices - Part II: Experimental set-up and application to amorphous silica particles

机译:气溶胶折射率测定的新方法 - 第II部分:实验组和应用于无定形二氧化硅颗粒

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This article is the Part II of a work aimed at proposing a new method for determining the optical constants of aerosols. The Part I detailed the theoretical and numerical basis of an algorithm devoted to retrieve the imaginary and the real part of complex refractive indices from extinction spectra of aerosols. This algorithm associates the Mie theory, the single subtractive Kramers-Kronig relation, and an optimal estimation method in an iterative process. This Part II presents the experimental set-up developed to record simultaneously high spectral resolution extinction spectra and size distributions of airborne silica particles. Extinction spectra are measured with a high spectral resolution on a broad spectral range, including both infrared (650 - 2,500 cm(-1)) and UV-visible (9,000 - 32,500 cm(-1)) spectral regions. Experimental data were used to retrieve the complex refractive indices of aerosol particles. By associating the numerical procedure presented in the first paper and this experimental set-up, complex refractive indices of silica spherical aerosol particles have been determined under controlled experimental conditions. Additional comparison between experimental and simulated extinction spectra from retrieved complex refractive indices shows that this new methodology provides optical properties representative of the material. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文是旨在提出确定气溶胶光学常数的新方法的工作的第二部分。第一部分详细说明了符合算法的理论和数值基础,以从气溶胶的消光光谱从喷射光谱检索假想和真实部分。该算法将MIE理论,单减数kramers-kronig关系和迭代过程中的最佳估计方法相关联。该第二部分介绍了开发的实验设置,以便同时进行高光谱分辨率消光光谱和空气硅胶颗粒的尺寸分布。在广谱范围内以高光谱分辨率测量消光光谱,包括红外(650-2,500cm(-1))和UV可见(9,000-22,500cm(-1))光谱区域。实验数据用于检索气溶胶颗粒的复杂折射率。通过将在第一纸张中提出的数值程序和该实验设置相关联,在受控实验条件下已经确定了二氧化硅球形气溶胶颗粒的复杂折射率。检索到的复屈光折射率的实验和模拟消光光谱之间的额外比较表明,这种新方法提供了代表材料的光学性质。 (c)2017 Elsevier Ltd.保留所有权利。

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