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An investigation of the factors influencing the detection sensitivity of cavity enhanced Raman scattering for probing aqueous binary aerosol droplets

机译:影响腔增强拉曼散射探测二元气溶胶液滴探测灵敏度的因素研究

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摘要

Stimulated Raman scattering (SRS) from single aerosol droplets can be observed at extremely low laser threshold intensities at wavelengths commensurate with whispering gallery modes. Although droplet size can routinely be determined from the ensuing cavity enhanced Raman scattering (CERS) fingerprint, determining droplet composition is a considerably more challenging measurement. We present here an examination of the factors that influence and limit the detection sensitivity of CERS in quantifying the concentrations of sulfate and nitrate in water droplets, 20 - 50 mm in radius. In particular, we consider the variation in nitrate and sulfate SRS signal with variation in species concentration, probe laser intensity and droplet size. We illustrate that the band contour of the OH stretching band can be used as a relative measure of the internal light intensity circulating within the droplet and experimentally investigate how the threshold condition for SRS is achieved.
机译:可以在极低的激光阈值强度下(与回音壁模式相对应的波长)观察到单个气溶胶液滴的受激拉曼散射(SRS)。尽管可以从随后的腔增强拉曼散射(CERS)指纹中常规确定液滴的大小,但是确定液滴的组成是一项更具挑战性的测量。在此,我们对影响和限制CERS在量化半径为20-50 mm的水滴中的硫酸盐和硝酸盐浓度时的检测灵敏度的因素进行了检查。特别是,我们考虑了硝酸盐和硫酸盐SRS信号随物种浓度,探针激光强度和液滴大小的变化而变化。我们说明,OH拉伸带的带轮廓可以用作液滴内循环的内部光强度的相对度量,并通过实验研究如何实现SRS的阈值条件。

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