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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Measurements of extinction by aerosol particles in the near-infrared using continuous wave cavity ring-down spectroscopy
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Measurements of extinction by aerosol particles in the near-infrared using continuous wave cavity ring-down spectroscopy

机译:使用连续波腔衰荡光谱法测量近红外中的气溶胶颗粒的消光

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摘要

Cavity ring-down spectroscopy using a fiber-coupled continuous wave distributed feedback laser at a wavelength of 1520 nm has been used to measure extinction of light by samples of nearly monodisperse aerosol particles <1 μm in diameter. A model is tested for the analysis of the sample extinction that is based on the Poisson statistics of the number of particles within the intracavity laser beam: variances of measured extinction are used to derive values of the scattering cross section for size-selected aerosol particles, without need for knowledge of the particle number density or sample length. Experimental parameters that influence the performance of the CRD system and the application and limitations of the statistical model are examined in detail. Determinations are reported of the scattering cross sections for polystyrene spheres (PSSs), sodium chloride, and ammonium sulfate, and, for particles greater than 500 nm in diameter, are shown to be in agreement with the corresponding values calculated using Mie theory or Discrete Dipole Approximation methods. For smaller particles, the experimentally derived values of the scattering cross section are larger than the theoretical predictions, and transmission of a small fraction of larger particles into the cavity is argued to be responsible for this discrepancy. The effects of cubic structure on the determination of optical extinction efficiencies of sodium chloride aerosol particles are examined. Values are reported for the real components of the refractive indices at 1520 nm of PSS, sodium chloride, and ammonium sulfate aerosol particles.
机译:使用光纤耦合连续波分布反馈激光器在1520 nm波长下的腔衰荡光谱法已被用于测量直径小于1μm的几乎单分散的气溶胶颗粒的光的消光。测试了一个模型,用于基于腔内激光束内颗粒数量的泊松统计数据对样品的消光进行分析:使用测得的消光方差得出尺寸选择的气溶胶颗粒的散射截面值,无需了解颗粒数密度或样品长度。详细检查了影响CRD系统性能以及统计模型的应用和局限性的实验参数。据报道测定了聚苯乙烯球(PSSs),氯化钠和硫酸铵的散射截面,对于直径大于500 nm的颗粒,表明与使用Mie理论或离散偶极子计算的相应值一致近似方法。对于较小的粒子,实验得出的散射横截面值大于理论预测值,并且认为一小部分较大的粒子进入腔体是造成这种差异的原因。检验了立方结构对氯化钠气溶胶颗粒消光效率测定的影响。报告的值是PSS,氯化钠和硫酸铵气雾剂颗粒在1520 nm处的折射率的实部。

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