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Infrared transmission equations in a five media system: gas and liquid

机译:五种介质系统中的红外传输方程:气体和液体

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摘要

Equations are proposed for transmission cells in the presence of multiple reflections and absorption which generate unwanted fringes. These influence adversely band intensity measurements. The infrared (IR) spectra generated with these equations are compared successfully with experimental spectra obtained with BaF2, ZnSe, and Si windows in parallel mount formation having μm range air gaps. Equations are extended for integration of a variable path length such as in wedge shaped cells that are used to mitigate fringe formations but generate other odd problems such as path length determination. These equations allow the evaluation of the transmission obtained from boxcar cells whose parallelism is a little offset. This phenomenon modifies the fringe intensities. The proposed equations were used to calculate the IR spectra of pure liquid D2O between BaF2 and ZnSe windows with path lengths of around 25 μm and compared with experimental spectra. Since the fit was very good it indicates that the proposed equations give better optical properties of pure liquids than that presently available. This is important for liquid used as standards and in particular water used here as reference. Keywords Infrared - Transmission equations - Five media systems - Gas - Liquid - Multiple reflections - Fringes
机译:对于存在多次反射和吸收而产生有害条纹的透射单元,提出了方程。这些对频带强度测量产生不利影响。将通过这些方程式生成的红外(IR)光谱与通过BaF 2 ,ZnSe和Si窗口平行安装形成的具有μm范围气隙的实验光谱进行了成功比较。方程被扩展以集成可变路径长度,例如在楔形单元中,用于减少条纹形成,但会产生其他奇怪的问题,例如路径长度确定。这些方程式允许评估从平行度稍有偏移的棚车获得的透射率。这种现象改变了条纹强度。提出的方程用于计算BaF 2 和ZnSe窗口之间纯液体D 2 O的红外光谱,其路径长度约为25μm,并与实验光谱进行比较。由于拟合度非常好,因此表明所提出的方程式提供的纯液体光学特性优于目前可用的方程。这对于用作标准的液体,特别是此处用作参考的水非常重要。红外-传输方程-五种介质系统-气体-液体-多次反射-边缘

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