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Calibration of a multi-pass photoacoustic spectrometer cell using light-absorbing aerosols

机译:使用吸光气溶胶校准多通道光声光谱仪单元

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The multi-pass photoacoustic spectrometer (PAS) is an important tool for the direct measurement of light absorption by atmospheric aerosol. Accurate PAS measurements heavily rely on accurate calibration of their signal. Ozone is often used for calibrating PAS instruments by relating the photoacoustic signal to the absorption coefficient measured by an independent method such as cavity ring down spectroscopy (CRD-S), cavity-enhanced spectroscopy (CES) or an ozone monitor. We report here a calibration method that uses measured absorption coefficients of aerosolized, light-absorbing organic materials and offer an alternative approach to calibrate photoacoustic aerosol spectrometers at 404?nm. To implement this method, we first determined the complex refractive index of nigrosin, an organic dye, using spectroscopic ellipsometry and then used this well-characterized material as a standard material for PAS calibration.
机译:多通道光声光谱仪(PAS)是直接测量大气气溶胶吸收光的重要工具。准确的PAS测量在很大程度上取决于对其信号的准确校准。臭氧通常用于通过将光声信号与通过独立方法(例如腔衰荡光谱法(CRD-S),腔增强光谱法(CES)或臭氧监测器)测量的吸收系数相关联来校准PAS仪器。我们在这里报告一种校准方法,该方法使用测得的雾化,吸光有机材料的吸收系数,并提供了另一种方法来校准404?nm的光声气溶胶光谱仪。为了实现该方法,我们首先使用椭圆偏振光谱法确定了有机染料尼古丁的复数折射率,然后将这种特性良好的材料用作PAS校准的标准材料。

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