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A non-linearity correction method of charge-coupled device array spectrometer

机译:电荷耦合器件阵列光谱仪的非线性校正方法

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The charge-coupled device (CCD) array spectrometers are increasingly being used in wide variety of scientific researches and industrial applications. However, all CCD detectors suffer some amount of non-linear behavior on response to light, and the accuracy of the CCD array spectrometer measurement will be influenced from the non-linear behavior, the detectable error is presented. Therefore, the non-linearity correction method is important to obtain the accurate results of spectrometers based on the CCD. Here, we proposed a convenient experiment and calculation method to solve the problem of non-linearity. With the combined values of all the pixels across the detector, a 7th order polynomial is fitted in the relation between the normalized counts per second and counts, and the correction coefficients were generated by this polynomial for the pixels. The method to apply the correction is dividing the original response by the calculated correction coefficients for all the pixels. Finally, the CCD detector response is linear to >99.5% after correcting for the non-linearity of spectrometers, experimental results show that the proposed method is reasonable and efficient.
机译:电荷耦合器件(CCD)阵列光谱仪越来越多地用于各种科学研究和工业应用。然而,所有CCD探测器响应光遭受一定量的非线性行为,并且CCD阵列光谱仪测量的准确性将受到非线性行为的影响,呈现可检测的误差。因此,非线性校正方法很重要,无法基于CCD获得光谱仪的精确结果。在这里,我们提出了一种方便的实验和计算方法来解决非线性问题。利用跨越检测器的所有像素的组合值,第七阶多项式拟合在归一计数的每秒计数和计数之间的关系中,并且由该多项式用于像素的该多项式产生校正系数。应用校正的方法是将计算出的校正系数用于所有像素的原始响应。最后,CCD检测器响应在校正光谱仪的非线性后直线为> 99.5%,实验结果表明该方法是合理且有效的。

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