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Determination of Spectrometer-Detector Parameters from Calibration Spectra and the Use of the Parameters in Spectrometer Calibrations

机译:从校准光谱确定光谱仪-检测器参数,以及在光谱仪校准中使用参数

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摘要

The grating equation is used to generate quadratic calibration equations for multichannel detectors with perpendicular and tilted focal planes. The quadratic coefficients are not independent and contain terms that are used to solve for spectrometer-detector parameters. The parameters can be calculated from a quadratic fit at one spectrometer position, but more accurate values can be obtained from quadratic fits at two spectrometer positions. The calculations show that the detector focal plane is tilted by about two degrees. Once values for the spectrometer-detector parameters are obtained from calibrations using at least three lines at one or two spectrometer positions, only one calibration line at any spectrometer position is required to obtain accuracies on the order of 0.1 cm~(-1) over a several thousand wavenumber range. The main cause of spectrometer drift is a change in the diffraction angle and/or the spectrometer included angle. This drift is almost totally compensated by the one-line calibration, which adjusts the diffraction angle. A neon pen lamp is used to generate the calibration spectra. Using standard air wavelengths compared to true wavelengths can produce calibration errors of 0.1 to 0.6 cm~(-1); the magnitude depends on local conditions and how the laser wavelength is treated.
机译:光栅方程用于生成具有垂直和倾斜焦平面的多通道探测器的二次校准方程。二次系数不是独立的,并且包含用于求解光谱仪检测器参数的项。可以从一个光谱仪位置的二次拟合计算参数,但可以从两个光谱仪位置的二次拟合获得更准确的值。计算表明检测器焦平面倾斜约2度。一旦在一个或两个光谱仪位置上使用至少三条线从校准中获得了光谱仪-检测器参数的值,则在任何光谱仪位置上仅需要一条校准线就可以在一个光谱仪上获得0.1 cm〜(-1)的精度。几千波数范围。光谱仪漂移的主要原因是衍射角和/或光谱仪夹角的变化。这种漂移几乎可以通过单线校准(通过调整衍射角)完全补偿。霓虹笔灯用于生成校准光谱。与标准波长相比,使用标准空气波长会产生0.1至0.6 cm〜(-1)的校准误差;幅度取决于当地条件以及激光波长的处理方式。

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